ncr Quantitative 3D assessment of 68Ga-DOTATOC PET/MRI with diffusion-weighted imaging to assess imaging markers for gastroendopancreatic neuroendocrine tumors: Preliminary results By jnm.snmjournals.org Published On :: 2019-12-20T13:25:42-08:00 68Ga-DOTATOC-PET/MRI (68Gallium-DOTATOC-positron emission tomography/magnetic resonance imaging) combines the advantages of PET in the acquisition of metabolic-functional information with the high soft tissue contrast of MRI. Standardized uptake values (SUV) in tumors were suggested as a measure of somatostatin receptor expression. A challenge with receptor ligands is, that the distribution volume is confined to tissues with tracer-uptake, potentially limiting SUV quantification. In this study, different functional, three-dimensional (3D) SUV, apparent diffusion coefficient (ADC) parameters and arterial tumor enhancement were tested for the characterization of gastroendopancreatic neuroendocrine tumors (GEP-NET). Methods: For this single-center, cross-sectional study, 22 patients with 24 histologically confirmed GEP-NET lesions (15 men/7 women; median, 61 years, range, 43-81 years), who received hybrid 68Ga-DOTA-PET/MRI examinations at 3T between January 2017 and July 2019 met eligibility criteria. SUVs, tumor-to-background ratios (TBR), the total functional tumor volume (TFTV), ADCmean and ADCmin were measured based on volumes of interest (VOI) and examined with receiver operating characteristic analysis to determine cut-off values for differentiation between low and intermediate grade GEP-NET. Spearman’s rank correlation coefficients were used to assess correlations between functional imaging parameters. Results: The ratio of PET-derived SUVmean and diffusion-weighted imaging (DWI)-derived ADCmin was introduced as a combined variable to predict tumor grade, outperforming single predictors. Based on a threshold ratio of 0.03 to be exceeded, tumors could be classified as grade 2 with a sensitivity of 86% and specificity of 100%. SUV and functional ADC values as well as arterial contrast enhancement parameters showed non-significant and mostly negligible correlations. Conclusion: As receptor density and tumor cellularity appear to be independent, potentially complementary phenomena, the combined PET/MRI ratio SUVmean/ADCmin may be used as a novel biomarker, allowing to differentiate between grade 1 and 2 GEP-NET. Full Article
ncr Early Detection in a Mouse Model of Pancreatic Cancer by Imaging DNA Damage Response Signalling By jnm.snmjournals.org Published On :: 2019-12-20T13:25:42-08:00 Rationale: Despite its widespread use in oncology, the PET radiotracer 18F-FDG is ineffective for improving early detection of pancreatic ductal adenocarcinoma (PDAC). An alternative strategy for early detection of pancreatic cancer involves visualisation of high-grade pancreatic intraepithelial neoplasias (PanIN-3), generally regarded as the non-invasive precursors of PDAC. The DNA damage response is known to be hyper-activated in late-stage PanINs. Therefore, we investigated whether the SPECT imaging agent, 111In-anti-H2AX-TAT, allows visualisation of the DNA damage repair marker H2AX in PanIN-3s in an engineered mouse model of PDAC, to facilitate early detection of PDAC. Methods: Genetically engineered KPC mice (KRasLSL.G12D/+; p53LSL.R172H/+; PdxCre) were imaged with 18F-FDG and 111In-anti-H2AX-TAT. PanIN/PDAC presence visualised by histology was compared with autoradiography and immunofluorescence. Separately, the survival of KPC mice imaged with 111In-anti-H2AX-TAT was evaluated. Results: In KPC mouse pancreata, H2AX expression was increased in high-grade PanINs, but not in PDAC, corroborating earlier results obtained from human pancreas sections. Uptake of 111In-anti-H2AX-TAT, but not 111In-IgG-TAT or 18F-FDG, within the pancreas was positively correlated with the age of KPC mice, which was correlated with the number of high-grade PanINs. 111In-anti-H2AX-TAT localises preferentially in high-grade PanIN lesions, but not in established PDAC. Younger, non-tumour-bearing KPC mice that show uptake of 111In-anti-H2AX-TAT in the pancreas survive significantly shorter than mice with physiological 111In-anti-H2AX-TAT uptake. Conclusion: 111In-anti-H2AX-TAT imaging allows non-invasive detection of DNA damage repair signalling upregulation in pre-invasive PanIN lesions and is a promising new tool to aid in the early detection and staging of pancreatic cancer. Full Article
ncr FDG-PET/CT identifies predictors of survival in patients with locally advanced cervical carcinoma and para-aortic lymph node involvement to increase treatment By jnm.snmjournals.org Published On :: 2020-02-07T14:31:42-08:00 Introduction: To use positron emission tomography coupled with computed tomography (18FDG-PET/CT) to identify a high-risk subgroup requiring therapeutic intensification among patients with locally advanced cervical cancer (LACC) and para-aortic lymph node (PALN) involvement. Methods: In this retrospective multicentric study, patients with LACC and PALN involvement concurrently treated with chemoradiotherapy and extended-field radiotherapy (EFR) between 2006 and 2016 were included. A senior nuclear medicine specialist in PET for gynaecologic oncology reviewed all 18FDG-PET/CT scans. Metabolic parameters including maximum standardised uptake value (SUVmax), metabolic tumour volume (MTV) and total lesion glycolysis (TLG) were determined for the primary tumour, pelvic lymph nodes and PALN. Associations between these parameters and overall survival (OS) were assessed with Cox's proportional hazards model. Results: Sixty-eight patients were enrolled in the study. Three-year OS was 55.5% (95% CI (40.8-68.0)). When adjusted for age, stage and histology, pelvic lymph node TLG, PALN TLG and PALN SUVmax were significantly associated with OS (p<0.005). Conclusion: FDG-PET/CT was able to identify predictors of survival in the homogeneous subgroup of patients with LACC and PALN involvement, thus allowing therapeutic intensification to be proposed. Full Article
ncr Clinical Translation of a 68Ga-labeled Integrin {alpha}v{beta}6-targeting Cyclic Radiotracer for PET Imaging of Pancreatic Cancer By jnm.snmjournals.org Published On :: 2020-02-21T14:46:23-08:00 The overexpression of integrin αvβ6 in pancreatic cancer makes it a promising target for noninvasive positron emission tomography (PET) imaging. However, currently, most integrin αvβ6-targeting radiotracers are based on linear peptides, which are quickly degraded in the serum by proteinases. Herein, we aimed to develop and assess a 68Ga-labeled integrin αvβ6-targeting cyclic peptide (68Ga-cycratide) for PET imaging of pancreatic cancer. Methods: 68Ga-cycratide was prepared, and its PET imaging profile was compared with that of the linear peptide (68Ga-linear-pep) in an integrin αvβ6-positive BxPC-3 human pancreatic cancer mouse model. Five healthy volunteers (two women and three men) underwent whole-body PET/CT imaging after injection of 68Ga-cycratide, and biodistribution and dosimetry calculations were determined. PET/CT imaging of two patients was performed to investigate the potential role of 68Ga-cycratide in pancreatic cancer diagnosis and treatment monitoring. Results: 68Ga-cycratide exhibited significantly higher tumor uptake than did 68Ga-linear-pep in BxPC-3 tumor-bearing mice, owing—at least in part—to markedly improved in vivo stability. 68Ga-cycratide could sensitively detect the pancreatic cancer lesions in an orthotopic mouse model and was well tolerated in all healthy volunteers. Preliminary PET/CT imaging in patients with pancreatic cancer demonstrated that 68Ga-cycratide was comparable to 18F-fludeoxyglucose for diagnostic imaging and post-surgery tumor relapse monitoring. Conclusion: 68Ga-cycratide is an integrin αvβ6-specific PET radiotracer with favorable pharmacokinetics and dosimetry profile. 68Ga-cycratide is expected to provide an effective noninvasive PET strategy for pancreatic cancer lesion detection and therapy response monitoring. Full Article
ncr Deletion of fatty acid transport protein 2 (FATP2) in the mouse liver changes the metabolic landscape by increasing the expression of PPAR{alpha}-regulated genes [Lipids] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Fatty acid transport protein 2 (FATP2) is highly expressed in the liver, small intestine, and kidney, where it functions in both the transport of exogenous long-chain fatty acids and the activation of very-long-chain fatty acids. Here, using a murine model, we investigated the phenotypic impacts of deleting FATP2, followed by a transcriptomic analysis using unbiased RNA-Seq to identify concomitant changes in the liver transcriptome. WT and FATP2-null (Fatp2−/−) mice (5 weeks) were maintained on a standard chow diet for 6 weeks. The Fatp2−/− mice had reduced weight gain, lowered serum triglyceride, and increased serum cholesterol levels and attenuated dietary fatty acid absorption. Transcriptomic analysis of the liver revealed 258 differentially expressed genes in male Fatp2−/− mice and a total of 91 in female Fatp2−/− mice. These genes mapped to the following gene ontology categories: fatty acid degradation, peroxisome biogenesis, fatty acid synthesis, and retinol and arachidonic acid metabolism. Targeted RT-quantitative PCR verified the altered expression of selected genes. Of note, most of the genes with increased expression were known to be regulated by peroxisome proliferator–activated receptor α (PPARα), suggesting that FATP2 activity is linked to a PPARα-specific proximal ligand. Targeted metabolomic experiments in the Fatp2−/− liver revealed increases of total C16:0, C16:1, and C18:1 fatty acids; increases in lipoxin A4 and prostaglandin J2; and a decrease in 20-hydroxyeicosatetraenoic acid. We conclude that the expression of FATP2 in the liver broadly affects the metabolic landscape through PPARα, indicating that FATP2 provides an important role in liver lipid metabolism through its transport or activation activities. Full Article
ncr Upregulation of CD73 Confers Acquired Radioresistance and is Required for Maintaining Irradiation-selected Pancreatic Cancer Cells in a Mesenchymal State [Research] By feedproxy.google.com Published On :: 2020-02-01T00:05:30-08:00 The molecular mechanisms underlying exceptional radioresistance in pancreatic cancer remain elusive. In the present study, we established a stable radioresistant pancreatic cancer cell line MIA PaCa-2-R by exposing the parental MIA PaCa-2 cells to fractionated ionizing radiation (IR). Systematic proteomics and bioinformatics analysis of protein expression in MIA PaCa-2 and MIA PaCa-2-R cells revealed that several growth factor-/cytokine-mediated pathways, including the OSM/STAT3, PI3K/AKT, and MAPK/ERK pathways, were activated in the radioresistant cells, leading to inhibition of apoptosis and increased epithelial-mesenchymal plasticity. In addition, the radioresistant cells exhibited enhanced capabilities of DNA repair and antioxidant defense compared with the parental cells. We focused functional analysis on one of the most up-regulated proteins in the radioresistant cells, ecto-5'-nucleotidase (CD73), which is a cell surface protein that is overexpressed in different types of cancer. Ectopic overexpression of CD73 in the parental cells resulted in radioresistance and conferred resistance to IR-induced apoptosis. Knockdown of CD73 re-sensitized the radioresistant cells to IR and IR-induced apoptosis. The effect of CD73 on radioresistance and apoptosis is independent of the enzymatic activity of CD73. Further studies demonstrate that CD73 up-regulation promotes Ser-136 phosphorylation of the proapoptotic protein BAD and is required for maintaining the radioresistant cells in a mesenchymal state. Our findings suggest that expression alterations in the IR-selected pancreatic cancer cells result in hyperactivation of the growth factor/cytokine signaling that promotes epithelial-mesenchymal plasticity and enhancement of DNA repair. Our results also suggest that CD73, potentially a novel downstream factor of the enhanced growth factor/cytokine signaling, confers acquired radioresistance by inactivating proapoptotic protein BAD via phosphorylation of BAD at Ser-136 and by maintaining the radioresistant pancreatic cancer cells in a mesenchymal state. Full Article
ncr Glucose availability but not changes in pancreatic hormones sensitizes hepatic AMPK activity during nutritional transition in rodents [Metabolism] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 The cellular energy sensor AMP-activated protein kinase (AMPK) is a metabolic regulator that mediates adaptation to nutritional variations to maintain a proper energy balance in cells. We show here that suckling-weaning and fasting-refeeding transitions in rodents are associated with changes in AMPK activation and the cellular energy state in the liver. These nutritional transitions were characterized by a metabolic switch from lipid to glucose utilization, orchestrated by modifications in glucose levels and the glucagon/insulin ratio in the bloodstream. We therefore investigated the respective roles of glucose and pancreatic hormones on AMPK activation in mouse primary hepatocytes. We found that glucose starvation transiently activates AMPK, whereas changes in glucagon and insulin levels had no impact on AMPK. Challenge of hepatocytes with metformin-induced metabolic stress strengthened both AMPK activation and cellular energy depletion under limited-glucose conditions, whereas neither glucagon nor insulin altered AMPK activation. Although both insulin and glucagon induced AMPKα phosphorylation at its Ser485/491 residue, they did not affect its activity. Finally, the decrease in cellular ATP levels in response to an energy stress was additionally exacerbated under fasting conditions and by AMPK deficiency in hepatocytes, revealing metabolic inflexibility and emphasizing the importance of AMPK for maintaining hepatic energy charge. Our results suggest that nutritional changes (i.e. glucose availability), rather than the related hormonal changes (i.e. the glucagon/insulin ratio), sensitize AMPK activation to the energetic stress induced by the dietary transition during fasting. This effect is critical for preserving the cellular energy state in the liver. Full Article
ncr HDL and pancreatic {beta} cells: a SMO-king gun? By feedproxy.google.com Published On :: 2020-04-01 Liam R. BrunhamApr 1, 2020; 61:468-469Commentary Full Article
ncr HDL inhibits endoplasmic reticulum stress-induced apoptosis of pancreatic {beta}-cells in vitro by activation of Smoothened By feedproxy.google.com Published On :: 2020-04-01 Mustafa YalcinkayaApr 1, 2020; 61:492-504Research Articles Full Article
ncr Circulating oxidized LDL increased in patients with acute myocardial infarction is accompanied by heavily modified HDL. By feedproxy.google.com Published On :: 2020-04-14 Naoko SawadaApr 14, 2020; 0:jlr.RA119000312v1-jlr.RA119000312Research Articles Full Article
ncr The lncRNA Gm15622 stimulates SREBP-1c expression and hepatic lipid accumulation by sponging the miR-742-3p in mice By feedproxy.google.com Published On :: 2020-03-30 Minjuan MaMar 30, 2020; 0:jlr.RA120000664v1-jlr.RA120000664Research Articles Full Article
ncr The lncRNA Gm15622 stimulates SREBP-1c expression and hepatic lipid accumulation by sponging the miR-742-3p in mice [Research Articles] By feedproxy.google.com Published On :: 2020-03-30T14:36:26-07:00 Excessive lipid deposition is a hallmark of nonalcoholic fatty liver disease (NAFLD). Although much has been learned about the enzymes and metabolites involved in NAFLD, few studies have focused on the role of long non-coding RNAs (lncRNAs) in hepatic lipid accumulation. Here, using in vitro and in vivo models of NAFLD, we found that the lncRNA Gm15622 is highly expressed in the liver of obese mice fed a high-fat diet (HFD) and in murine liver (AML-12) cells treated with free fatty acids. Investigating the molecular mechanism in the liver-enriched expression of Gm15622 and its effects on lipid accumulation in hepatocytes and on NAFLD pathogenesis, we found that Gm15622 acts as a sponge for the microRNA miR-742-3p. This sponging activity increased the expression of the transcriptional regulator sterol regulatory element–binding transcription factor 1c (SREBP-1c) and promoted lipid accumulation in the liver of the HFD mice and AML-12 cells. Moreover, further results indicated that metformin suppresses Gm15622 and alleviates NAFLD-associated lipid deposition in mice. In conclusion, we have identified an lncRNA Gm15622–miR-742-3p–SREBP-1c regulatory circuit associated with NAFLD in mice, a finding that significantly advances our insight into how lipid metabolism and accumulation are altered in this metabolic disorder. Our results also suggest that Gm15622 may be a potential therapeutic target for managing NAFLD. Full Article
ncr Circulating oxidized LDL increased in patients with acute myocardial infarction is accompanied by heavily modified HDL. [Research Articles] By feedproxy.google.com Published On :: 2020-04-14T05:33:23-07:00 Oxidized low-density lipoprotein (oxLDL) is a known risk factor for atherogenesis. This study aimed to reveal structural features of oxLDL present in human circulation related to atherosclerosis. When LDL was fractionated on an anion-exchange column, in vivo-oxLDL, detected by the anti-oxidized phosphatidylcholine (oxPC) monoclonal antibody, was recovered in flow-through and electronegative LDL (LDL(-)) fractions. The amount of the electronegative in vivo-oxLDL, namely oxLDL in LDL(-) fraction, present in patients with acute myocardial infarction (AMI) was three-fold higher than that observed in healthy subjects. Surprisingly, LDL(-) fraction contained apoA1 in addition to apoB, and HDL-sized particles were observed with transmission electron microscopy. In LDL(-) fractions, acrolein adducts were identified at all lysine residues in apoA1, with only a small number of acrolein-modified residues were identified in apoB. The amount of oxPC adducts of apoB was higher in LDL(-) than in L1 fraction as determined using western blotting. The electronegative in vivo-oxLDL was immunologically purified from the LDL(-) fraction with an anti-oxPC monoclonal antibody. Majority of PC species was not oxidized, whereas oxPC and lysoPC did not accumulate. Here, we propose that there are two types of in vivo-oxLDL in human circulating plasma and the electronegative in vivo-oxLDL accompanies oxidized HDL. Full Article
ncr Characterization of signaling pathways associated with pancreatic {beta}-cell adaptive flexibility in compensation of obesity-linked diabetes in db/db mice [Research] By feedproxy.google.com Published On :: 2020-04-07T14:34:38-07:00 The onset of obesity-linked type 2 diabetes (T2D) is marked by an eventual failure in pancreatic β-cell function and mass that is no longer able to compensate for the inherent insulin resistance and increased metabolic load intrinsic to obesity. However, in a commonly used model of T2D, the db/db mouse, β-cells have an inbuilt adaptive flexibility enabling them to effectively adjust insulin production rates relative to the metabolic demand. Pancreatic β-cells from these animals have markedly reduced intracellular insulin stores, yet high rates of (pro)insulin secretion, together with a substantial increase in proinsulin biosynthesis highlighted by expanded rough endoplasmic reticulum and Golgi apparatus. However, when the metabolic overload and/or hyperglycemia is normalized, β-cells from db/db mice quickly restore their insulin stores and normalize secretory function. This demonstrates the β-cell’s adaptive flexibility and indicates that therapeutic approaches applied to encourage β-cell rest are capable of restoring endogenous β-cell function. However, mechanisms that regulate β-cell adaptive flexibility are essentially unknown. To gain deeper mechanistic insight into the molecular events underlying β-cell adaptive flexibility in db/db β-cells, we conducted a combined proteomic and post-translational modification specific proteomic (PTMomics) approach on islets from db/db mice and wild-type controls (WT) with or without prior exposure to normal glucose levels. We identified differential modifications of proteins involved in redox homeostasis, protein refolding, K48-linked deubiquitination, mRNA/protein export, focal adhesion, ERK1/2 signaling, and renin-angiotensin-aldosterone signaling, as well as sialyltransferase activity, associated with β-cell adaptive flexibility. These proteins are all related to proinsulin biosynthesis and processing, maturation of insulin secretory granules, and vesicular trafficking—core pathways involved in the adaptation of insulin production to meet metabolic demand. Collectively, this study outlines a novel and comprehensive global PTMome signaling map that highlights important molecular mechanisms related to the adaptive flexibility of β-cell function, providing improved insight into disease pathogenesis of T2D. Full Article
ncr HDL inhibits endoplasmic reticulum stress-induced apoptosis of pancreatic {beta}-cells in vitro by activation of Smoothened [Research Articles] By feedproxy.google.com Published On :: 2020-04-01T00:05:29-07:00 Loss of pancreatic β-cell mass and function as a result of sustained ER stress is a core step in the pathogenesis of diabetes mellitus type 2. The complex control of β-cells and insulin production involves hedgehog (Hh) signaling pathways as well as cholesterol-mediated effects. In fact, data from studies in humans and animal models suggest that HDL protects against the development of diabetes through inhibition of ER stress and β-cell apoptosis. We investigated the mechanism by which HDL inhibits ER stress and apoptosis induced by thapsigargin, a sarco/ER Ca2+-ATPase inhibitor, in β-cells of a rat insulinoma cell line, INS1e. We further explored effects on the Hh signaling receptor Smoothened (SMO) with pharmacologic agonists and inhibitors. Interference with sterol synthesis or efflux enhanced β-cell apoptosis and abrogated the anti-apoptotic activity of HDL. During ER stress, HDL facilitated the efflux of specific oxysterols, including 24-hydroxycholesterol (OHC). Supplementation of reconstituted HDL with 24-OHC enhanced and, in cells lacking ABCG1 or the 24-OHC synthesizing enzyme CYP46A1, restored the protective activity of HDL. Inhibition of SMO countered the beneficial effects of HDL and also LDL, and SMO agonists decreased β-cell apoptosis in the absence of ABCG1 or CYP46A1. The translocation of the SMO-activated transcription factor glioma-associated oncogene GLI-1 was inhibited by ER stress but restored by both HDL and 24-OHC. In conclusion, the protective effect of HDL to counter ER stress and β-cell death involves the transport, generation, and mobilization of oxysterols for activation of the Hh signaling receptor SMO Full Article
ncr HDL and pancreatic {beta} cells: a SMO-king gun? [Commentary] By feedproxy.google.com Published On :: 2020-04-01T00:05:29-07:00 Full Article
ncr Vitamin E does not prevent Western diet-induced NASH progression and increases metabolic flux dysregulation in mice [Research Articles] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 Fatty liver involves ectopic lipid accumulation and dysregulated hepatic oxidative metabolism, which can progress to a state of elevated inflammation and fibrosis referred to as nonalcoholic steatohepatitis (NASH). The factors that control progression from simple steatosis to NASH are not fully known. Here, we tested the hypothesis that dietary vitamin E (VitE) supplementation would prevent NASH progression and associated metabolic alterations induced by a Western diet (WD). Hyperphagic melanocortin-4 receptor-deficient (MC4R–/–) mice were fed chow, chow+VitE, WD, or WD+VitE starting at 8 or 20 weeks of age. All groups exhibited extensive hepatic steatosis by the end of the study (28 weeks of age). WD feeding exacerbated liver disease severity without inducing proportional changes in liver triglycerides. Eight weeks of WD accelerated liver pyruvate cycling, and 20 weeks of WD extensively upregulated liver glucose and oxidative metabolism assessed by 2H/13C flux analysis. VitE supplementation failed to reduce the histological features of NASH. Rather, WD+VitE increased the abundance and saturation of liver ceramides and accelerated metabolic flux dysregulation compared with 8 weeks of WD alone. In summary, VitE did not limit NASH pathogenesis in genetically obese mice, but instead increased some indicators of metabolic dysfunction. Full Article
ncr Problem Notes for SAS®9 - 65935: The UNICODE function does not support Numeric Character Representation (NCR) for a surrogate pair By feedproxy.google.com Published On :: Wed, 6 May 2020 09:33:48 EST Using the NCR form of a surrogate pair as an input string to the UNICODE function does not convert the string to the appropriate display character. Full Article BASE+Base+SAS
ncr Management of severe acute pancreatitis By feeds.bmj.com Published On :: Monday, December 2, 2019 - 13:11 Full Article
ncr ER stress increases store-operated Ca2+ entry (SOCE) and augments basal insulin secretion in pancreatic beta cells [Molecular Bases of Disease] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Type 2 diabetes mellitus (T2DM) is characterized by impaired glucose-stimulated insulin secretion and increased peripheral insulin resistance. Unremitting endoplasmic reticulum (ER) stress can lead to beta-cell apoptosis and has been linked to type 2 diabetes. Although many studies have attempted to link ER stress and T2DM, the specific effects of ER stress on beta-cell function remain incompletely understood. To determine the interrelationship between ER stress and beta-cell function, here we treated insulin-secreting INS-1(832/13) cells or isolated mouse islets with the ER stress–inducer tunicamycin (TM). TM induced ER stress as expected, as evidenced by activation of the unfolded protein response. Beta cells treated with TM also exhibited concomitant alterations in their electrical activity and cytosolic free Ca2+ oscillations. As ER stress is known to reduce ER Ca2+ levels, we tested the hypothesis that the observed increase in Ca2+ oscillations occurred because of reduced ER Ca2+ levels and, in turn, increased store-operated Ca2+ entry. TM-induced cytosolic Ca2+ and membrane electrical oscillations were acutely inhibited by YM58483, which blocks store-operated Ca2+ channels. Significantly, TM-treated cells secreted increased insulin under conditions normally associated with only minimal release, e.g. 5 mm glucose, and YM58483 blocked this secretion. Taken together, these results support a critical role for ER Ca2+ depletion–activated Ca2+ current in mediating Ca2+-induced insulin secretion in response to ER stress. Full Article
ncr Overexpression of GPR40 in Pancreatic {beta}-Cells Augments Glucose Stimulated Insulin Secretion and Improves Glucose Tolerance in Normal and Diabetic Mice By diabetes.diabetesjournals.org Published On :: 2009-02-10T11:50:44-08:00 Objective: GPR40 is a G protein-coupled receptor regulating free fatty acid-induced insulin secretion. We have generated transgenic mice overexpressing the human GPR40 gene (hGPR40-Tg) under control of the mouse insulin II promoter and have used them to examine the role of GPR40 in the regulation of insulin secretion and glucose homeostasis. Research Design and Methods: Normal (C57BL/6J) and diabetic (KK) mice overexpressing the human GPR40 gene under control of the insulin II promoter were generated, and their glucose metabolism and islet function were analyzed. Results: In comparison with nontransgenic littermates, hGPR40-Tg mice exhibited improved oral glucose tolerance with an increase in insulin secretion. Although islet morphological analysis showed no obvious differences between hGPR40-Tg and nontransgenic (NonTg) mice, isolated islets from hGPR40-Tg mice enhanced insulin secretion in response to high glucose (16 mM) than those from NonTg mice with unchanged low glucose (3 mM)-stimulated insulin secretion. In addition, hGPR40-Tg islets significantly increased insulin secretion against a naturally occurring agonist palmitate in the presence of 11 mM glucose. hGPR40-Tg mice were also found to be resistant to high fat diet-induced glucose intolerance, and hGPR40-Tg harboring KK mice showed augmented insulin secretion and improved oral glucose tolerance compared to nontransgenic littermates. Conclusions: Our results suggest that GPR40 may have a role in regulating glucose-stimulated insulin secretion and plasma glucose levels in vivo, and that pharmacological activation of GPR40 may provide a novel insulin secretagogue beneficial for the treatment of type 2 diabetes. Full Article
ncr Excitotoxicity and Overnutrition Additively Impair Metabolic Function and Identity of Pancreatic {beta}-cells By diabetes.diabetesjournals.org Published On :: 2020-04-24T09:55:27-07:00 A sustained increase in intracellular Ca2+ concentration (referred to herein as excitotoxicity), brought on by chronic metabolic stress, may contribute to pancreatic β-cell failure. To determine the additive effects of excitotoxicity and overnutrition on β-cell function and gene expression, we analyzed the impact of a high fat diet (HFD) on Abcc8 knock-out mice. Excitotoxicity caused β-cells to be more susceptible to HFD-induced impairment of glucose homeostasis, and these effects were mitigated by verapamil, a Ca2+ channel blocker. Excitotoxicity, overnutrition and the combination of both stresses caused similar but distinct alterations in the β-cell transcriptome, including additive increases in genes associated with mitochondrial energy metabolism, fatty acid β-oxidation and mitochondrial biogenesis, and their key regulator Ppargc1a. Overnutrition worsened excitotoxicity-induced mitochondrial dysfunction, increasing metabolic inflexibility and mitochondrial damage. In addition, excitotoxicity and overnutrition, individually and together, impaired both β-cell function and identity by reducing expression of genes important for insulin secretion, cell polarity, cell junction, cilia, cytoskeleton, vesicular trafficking, and regulation of β-cell epigenetic and transcriptional program. Sex had an impact on all β-cell responses, with male animals exhibiting greater metabolic stress-induced impairments than females. Together, these findings indicate that a sustained increase in intracellular Ca2+, by altering mitochondrial function and impairing β-cell identity, augments overnutrition-induced β-cell failure. Full Article
ncr Hyperuricemia Predisposes to the Onset of Diabetes via Promoting Pancreatic {beta}-Cell Death in Uricase Deficiency Male Mice By diabetes.diabetesjournals.org Published On :: 2020-04-24T13:05:31-07:00 Clinical studies have shown a link between hyperuricemia (HU) and diabetes, while the exact effect of soluble serum urate on glucose metabolism remains elusive. This study aims to characterize the glucose metabolic phenotypes and investigate the underlying molecular mechanisms using a novel spontaneous HU mouse model in which the Uricase (Uox) gene is absent. In an attempt to study the role of HU in glycometabolism, we implemented external stimulation on Uox-knockout (KO) and wild-type (WT) males with a high-fat diet (HFD) and/or injections of multiple low-dose streptozotocin (MLD-STZ) to provoke the potential role of urate. Notably, while Uox-KO mice developed glucose intolerance in the basal condition, no mice spontaneously developed diabetes, even with aging. HFD-fed Uox-KO mice manifested similar insulin sensitivity compared with WT controls. HU augmented the existing glycometabolism abnormality induced by MLD-STZ and eventually led to diabetes, as evidenced by the increased random glucose. Reduced β-cell masses and increased terminal deoxynucleotidyl TUNEL-positive β-cells suggested that HU-mediated diabetes was cell death dependent. However, urate-lowering treatment (ULT) cannot ameliorate the diabetes incidence or reverse β-cell apoptosis with significance. ULT displayed a significant therapeutic effect of HU-crystal– associated kidney injury and tubulointerstitial damage in diabetes. Moreover, we present transcriptomic analysis of isolated islets, using Uox-KO versus WT mice and streptozotocin-induced diabetic WT (STZ-WT) versus diabetic Uox-KO (STZ-KO) mice. Shared differentially expressed genes of HU primacy revealed Stk17β is a possible target gene in HU-related β-cell death. Together, this study suggests that HU accelerates but does not cause diabetes by inhibiting islet β-cell survival. Full Article
ncr Secretory Functions of Macrophages in the Human Pancreatic Islet are Regulated by Endogenous Purinergic Signaling By diabetes.diabetesjournals.org Published On :: 2020-04-24T13:05:31-07:00 Endocrine cells of the pancreatic islet interact with their microenvironment to maintain tissue homeostasis. Communication with local macrophages is particularly important in this context, but the homeostatic functions of human islet macrophages are not known. Here we show that the human islet contains macrophages in perivascular regions that are the main local source of the anti-inflammatory cytokine Il-10 and the metalloproteinase MMP9. Macrophage production and secretion of these homeostatic factors is controlled by endogenous purinergic signals. In obese and diabetic states, macrophage expression of purinergic receptors, MMP9, and Il-10 is reduced. We propose that in those states exacerbated beta cell activity due to increased insulin demand and increased cell death produces high levels of ATP that downregulate purinergic receptor expression. Loss of ATP sensing in macrophages may reduce their secretory capacity. Full Article
ncr Acute Hyperglycemia Increases Brain Pregenual Anterior Cingulate Cortex Glutamate Concentrations in Type 1 Diabetes Mellitus By diabetes.diabetesjournals.org Published On :: 2020-04-24T14:58:49-07:00 The brain mechanisms underlying the association of hyperglycemia with depressive symptoms are unknown. We hypothesized that disrupted glutamate metabolism in pregenual anterior cingulate cortex (ACC) in type 1 diabetes (T1D) without depression affects emotional processing. Using proton magnetic resonance spectroscopy (MRS), we measured glutamate concentrations in ACC and occipital cortex (OCC) in 13 T1D without major depression (HbA1c=7.1±0.7% [54±7mmol/mol]) and 11 healthy non-diabetic controls (HbA1c=5.5±0.2% [37±3mmol/mol]) during fasting euglycemia (EU) followed by a 60-minute +5.5mmol/l hyperglycemic clamp (HG). Intrinsic neuronal activity was assessed using resting-state blood oxygen level dependent functional MRI to measure the fractional amplitude of low frequency fluctuations in slow-band 4 (fALFF4). Emotional processing and depressive symptoms were assessed using emotional tasks (Emotional-Stroop, Self-Referent-Encoding-Task SRET) and clinical ratings (HAM-D, SCL-90-R), respectively. During HG, ACC glutamate increased (1.2mmol/kg, +10%, p=0.014) while ACC fALFF4 was unchanged (-0.007, -2%, p=0.449) in T1D; in contrast, glutamate was unchanged (-0.2mmol/kg, -2%, p=0.578) while fALFF4 decreased (-0.05, -13%, p=0.002) in controls. OCC glutamate and fALFF4 were unchanged in both groups. T1D had longer SRET negative-word response-times (p=0.017) and higher depression-rating scores (HAM-D p=0.020; SCL-90-R-depression p=0.008). Higher glutamate change tended to associate with longer Emotional-Stroop response-times in T1D only. Brain glutamate must be tightly controlled during hyperglycemia due to the risk for neurotoxicity with excessive levels. Results suggest that ACC glutamate control mechanisms are disrupted in T1D, which affects glutamatergic neurotransmission related to emotional or cognitive processing. Increased prefrontal glutamate during acute hyperglycemic episodes could explain our previous findings of associations between chronic hyperglycemia, cortical thinning and depressive symptoms in T1D. Full Article
ncr Integrated Pancreatic Blood Flow: Bi-Directional Microcirculation Between Endocrine and Exocrine Pancreas By diabetes.diabetesjournals.org Published On :: 2020-04-28T11:00:56-07:00 The pancreatic islet is a highly-vascularized endocrine micro-organ. The unique architecture of rodent islets, a so-called core-mantle arrangement seen in 2D images, led researchers to seek functional implications for islet hormone secretion. Three models of islet blood flow were previously proposed, all based on the assumption that islet microcirculation occurs in an enclosed structure. Recent electrophysiological and molecular biological studies using isolated islets also presumed uni-directional flow. Using intravital analysis of the islet microcirculation in mice, we find that islet capillaries are continuously integrated to those in the exocrine pancreas, which makes the islet circulation rather open, not self-contained. Similarly in human islets, the capillary structure was integrated with pancreatic microvasculature in its entirety. Thus, islet microcirculation has no relation to islet cytoarchitecture, which explains its well-known variability throughout species. Furthermore, tracking fluorescent-labeled red blood cells at the endocrine-exocrine interface revealed bi-directional blood flow, with similar variability in blood flow speed in both the intra- and extra-islet vasculature. To date, the endocrine and exocrine pancreas have been studied separately by different fields of investigators. We propose that the open circulation model physically links both endocrine and exocrine parts of the pancreas as a single organ through the integrated vascular network. Full Article
ncr Dextran Sulfate Protects Pancreatic {beta}-Cells, Reduces Autoimmunity and Ameliorates Type 1 Diabetes By diabetes.diabetesjournals.org Published On :: 2020-05-07T07:53:04-07:00 A failure in self-tolerance leads to autoimmune destruction of pancreatic β-cells and type 1 diabetes (T1D). Low molecular weight dextran sulfate (DS) is a sulfated semi-synthetic polysaccharide with demonstrated cytoprotective and immunomodulatory properties in vitro. However, whether DS can protect pancreatic β-cells, reduce autoimmunity and ameliorate T1D is unknown. Here we report that DS, but not dextran, protects human β-cells against cytokine-mediated cytotoxicity in vitro. DS also protects mitochondrial function and glucose-stimulated insulin secretion and reduces chemokine expression in human islets in a pro-inflammatory environment. Interestingly, daily treatment with DS significantly reduces diabetes incidence in pre-diabetic non-obese diabetic (NOD) mice, and most importantly, reverses diabetes in early-onset diabetic NOD mice. DS decreases β-cell death, enhances islet heparan sulfate (HS)/heparan sulfate proteoglycan (HSPG) expression and preserves β-cell mass and plasma insulin in these mice. DS administration also increases the expression of the inhibitory co-stimulatory molecule programmed death-1 (PD-1) in T-cells, reduces interferon-+ CD4+ and CD8+ T-cells and enhances the number of FoxP3+ cells. Collectively, these studies demonstrate that the action of one single molecule, DS, on β-cell protection, extracellular matrix preservation and immunomodulation can reverse diabetes in NOD mice highlighting its therapeutic potential for the treatment of T1D. Full Article
ncr Nutrient-Induced Metabolic Stress, Adaptation, Detoxification, and Toxicity in the Pancreatic {beta}-Cell By diabetes.diabetesjournals.org Published On :: 2020-02-20T11:55:30-08:00 Paraphrasing the Swiss physician and father of toxicology Paracelsus (1493–1541) on chemical agents used as therapeutics, "the dose makes the poison," it is now realized that this aptly applies to the calorigenic nutrients. The case here is the pancreatic islet β-cell presented with excessive levels of nutrients such as glucose, lipids, and amino acids. The short-term effects these nutrients exert on the β-cell are enhanced insulin biosynthesis and secretion and changes in glucose sensitivity. However, chronic fuel surfeit triggers additional compensatory and adaptive mechanisms by β-cells to cope with the increased insulin demand or to protect itself. When these mechanisms fail, toxicity due to the nutrient surplus ensues, leading to β-cell dysfunction, dedifferentiation, and apoptosis. The terms glucotoxicity, lipotoxicity, and glucolipotoxicity have been widely used, but there is some confusion as to what they mean precisely and which is most appropriate for a given situation. Here we address the gluco-, lipo-, and glucolipo-toxicities in β-cells by assessing the evidence both for and against each of them. We also discuss potential mechanisms and defend the view that many of the identified "toxic" effects of nutrient excess, which may also include amino acids, are in fact beneficial adaptive processes. In addition, candidate fuel-excess detoxification pathways are evaluated. Finally, we propose that a more general term should be used for the in vivo situation of overweight-associated type 2 diabetes reflecting both the adaptive and toxic processes to mixed calorigenic nutrients excess: "nutrient-induced metabolic stress" or, in brief, "nutri-stress." Full Article
ncr The cytochrome P450 enzyme CYP24A1 increases proliferation of mutant KRAS-dependent lung adenocarcinoma independent of its catalytic activity [Cell Biology] By feedproxy.google.com Published On :: 2020-05-01T00:06:09-07:00 We previously reported that overexpression of cytochrome P450 family 24 subfamily A member 1 (CYP24A1) increases lung cancer cell proliferation by activating RAS signaling and that CYP24A1 knockdown inhibits tumor growth. However, the mechanism of CYP24A1-mediated cancer cell proliferation remains unclear. Here, we conducted cell synchronization and biochemical experiments in lung adenocarcinoma cells, revealing a link between CYP24A1 and anaphase-promoting complex (APC), a key cell cycle regulator. We demonstrate that CYP24A1 expression is cell cycle–dependent; it was higher in the G2-M phase and diminished upon G1 entry. CYP24A1 has a functional destruction box (D-box) motif that allows binding with two APC adaptors, CDC20-homologue 1 (CDH1) and cell division cycle 20 (CDC20). Unlike other APC substrates, however, CYP24A1 acted as a pseudo-substrate, inhibiting CDH1 activity and promoting mitotic progression. Conversely, overexpression of a CYP24A1 D-box mutant compromised CDH1 binding, allowing CDH1 hyperactivation, thereby hastening degradation of its substrates cyclin B1 and CDC20, and accumulation of the CDC20 substrate p21, prolonging mitotic exit. These activities also occurred with a CYP24A1 isoform 2 lacking the catalytic cysteine (Cys-462), suggesting that CYP24A1's oncogenic potential is independent of its catalytic activity. CYP24A1 degradation reduced clonogenic survival of mutant KRAS-driven lung cancer cells, and calcitriol treatment increased CYP24A1 levels and tumor burden in Lsl-KRASG12D mice. These results disclose a catalytic activity-independent growth-promoting role of CYP24A1 in mutant KRAS-driven lung cancer. This suggests that CYP24A1 could be therapeutically targeted in lung cancers in which its expression is high. Full Article
ncr Structure of an ancestral mammalian family 1B1 cytochrome P450 with increased thermostability [Enzymology] By feedproxy.google.com Published On :: 2020-04-24T06:08:45-07:00 Mammalian cytochrome P450 enzymes often metabolize many pharmaceuticals and other xenobiotics, a feature that is valuable in a biotechnology setting. However, extant P450 enzymes are typically relatively unstable, with T50 values of ∼30–40 °C. Reconstructed ancestral cytochrome P450 enzymes tend to have variable substrate selectivity compared with related extant forms, but they also have higher thermostability and therefore may be excellent tools for commercial biosynthesis of important intermediates, final drug molecules, or drug metabolites. The mammalian ancestor of the cytochrome P450 1B subfamily was herein characterized structurally and functionally, revealing differences from the extant human CYP1B1 in ligand binding, metabolism, and potential molecular contributors to its thermostability. Whereas extant human CYP1B1 has one molecule of α-naphthoflavone in a closed active site, we observed that subtle amino acid substitutions outside the active site in the ancestor CYP1B enzyme yielded an open active site with four ligand copies. A structure of the ancestor with 17β-estradiol revealed only one molecule in the active site, which still had the same open conformation. Detailed comparisons between the extant and ancestor forms revealed increases in electrostatic and aromatic interactions between distinct secondary structure elements in the ancestral forms that may contribute to their thermostability. To the best of our knowledge, this represents the first structural evaluation of a reconstructed ancestral cytochrome P450, revealing key features that appear to contribute to its thermostability. Full Article
ncr MicroRNA Networks in Pancreatic Islet Cells: Normal Function and Type 2 Diabetes By diabetes.diabetesjournals.org Published On :: 2020-05-01 Lena EliassonMay 1, 2020; 69:804-812Small Noncoding RNAs in Diabetes Full Article
ncr Pancreas Pathology of Latent Autoimmune Diabetes in Adults (LADA) in Patients and in a LADA Rat Model Compared With Type 1 Diabetes By diabetes.diabetesjournals.org Published On :: 2020-04-01 Anne JörnsApr 1, 2020; 69:624-633Islet Studies Full Article
ncr The Incretin Approach for Diabetes Treatment: Modulation of Islet Hormone Release by GLP-1 Agonism By diabetes.diabetesjournals.org Published On :: 2004-12-01 Jens Juul HolstDec 1, 2004; 53:S197-S204Section V: The Incretin Pathway Full Article
ncr Evidence Against an Important Role of Plasma Insulin and Glucagon Concentrations in the Increase in EGP Caused by SGLT2 Inhibitors By diabetes.diabetesjournals.org Published On :: 2020-04-01 Mariam AlatrachApr 1, 2020; 69:681-688Pathophysiology Full Article
ncr Mechanisms of Pancreatic {beta}-Cell Death in Type 1 and Type 2 Diabetes: Many Differences, Few Similarities By diabetes.diabetesjournals.org Published On :: 2005-12-01 Miriam CnopDec 1, 2005; 54:S97-S107Section III: Inflammation and beta-Cell Death Full Article
ncr Virtual Roundtable: The End of Globalism? Remaining Interconnected While Under Increased Pressure to Isolate By feedproxy.google.com Published On :: Wed, 25 Mar 2020 14:30:01 +0000 Invitation Only Research Event 30 March 2020 - 1:00pm to 2:00pm Zoom Audio Call Event participants Fred Hochberg, Chairman and President, Export-Import Bank of the United States, 2009 -17Chair: Dr Leslie Vinjamuri, Director, US and the Americas Programme, Chatham House This event is part of the Chatham House Global Trade Policy Forum. We would like to take this opportunity to to thank founding partner AIG and supporting partners Clifford Chance LLP, Diageo plc and EY for their generous support of the forum. Department/project US and the Americas Programme, Global Trade Policy Forum US and Americas Programme Email Full Article
ncr Delivering Concrete Climate Change Action By feedproxy.google.com Published On :: Tue, 14 May 2013 11:06:32 +0000 Conference Towards 2015 21 October 2013 - 9:30am to 22 October 2013 - 3:30pm Chatham House, London Overview Speakers Press registration Sponsors Media partners Venue and accommodation Agenda Audience profile Over the past five years, the political conditions for a global agreement on climate change have shifted. There is today growing consensus that responding to a changing climate will require multi-level collaboration and new alliances. In the run-up to the deadline for a new international climate change agreement in 2015, the 17th Annual Chatham House Conference on Climate Change will focus on workable solutions that will help accelerate global decarbonization. This conference will ask:What will a global deal in 2015 look like? What are the key components of a shared vision? What elements do developing and developed countries need in order to reach agreement?How can the emerging international climate change regime – comprising voluntary partnerships, formal negotiations and business coalitions – deliver the necessary reductions in greenhouse gas emissions?To what extent will new energy realities affect the politics of climate change?What practical lessons can be learned from existing carbon mitigation and adaptation policies?How can the international community harness progressive leadership?Registration Michael AndersonChief Executive OfficerThe Rt Hon Gregory Barker MPMinister of State for Energy and Climate ChangeFrances BeineckePresidentTim BentonUK Champion for Global Food Security and Professor of Population EcologySam BickerstethChief ExecutiveTony De BrumMinister-in-Assistance to the PresidentGiles DicksonVP Environmental Policies and Global AdvocacyReid DetchonVice President, Energy and ClimateAlfred EvansChief Executive OfficerChristiana FigueresExecutive SecretaryMarcin KorolecMinister of Environment, PolandKate HamptonExecutive Director, Climate ChangeCameron HepburnProfessor of environmental economics, Smith School and INET at Oxford Martin School, University of Oxford, andDavid HoneClimate Change AdvisorPa Ousman JarjuSpecial Envoy for Climate ChangeSir David KingForeign Secretary’s Special Representative for Climate ChangeMartin KhorDirectorJohan KuylenstiernaDeputy-Director, Stockholm Environment InstituteJames LeatonProject DirectorBernice LeeResearch Director, Energy, Environment and ResourcesNick MabeyChief Executive OfficerAmina MohammedSpecial Adviser on Post-2015 Development PlanningJennifer MorganDirector of the Climate and Energy ProgramAdmiral Neil MorisettiForeign Secretary’s Special Representative for Climate ChangeMutsuyoshi NishimuraVisiting Research Fellow, Japan Institute of International affairsDr Atiur RahmanGovernorJohn SchellnhuberFounding DirectorTodd SternSpecial Envoy for Climate ChangeKelly RiggExecutive DirectorLaurence TubianaDirectorFraser ThompsonSenior FellowDominic WaughraySenior Director and Head of Environmental InitiativesFarhana YaminAssociate Fellow This conference will be held under the Chatham House Rule. Information for journalists Press can request a press pass using the form below. If you are interested in becoming a sponsor for this event, please contact George Woodhams on +44 (0)20 7957 5732 or email gwoodhams@chathamhouse.org. VenueChatham House conferences@chathamhouse.org Telephone: +44 (0)20 7957 5729 Fax: +44 (0)20 7957 5710 If you wish to book the venue for your event please phone +44 (0)20 7314 2764 Conference Unit Chatham House 10 St James's Square London SW1Y 4LE UKAccommodationAlthough we cannot book accommodation for delegates, we have arranged a reduced rate at some nearby hotels, where you can book your own accommodation. Please inform the hotel that you will be attending a conference at Chatham House (The Royal Institute of International Affairs) to qualify for the Institute's reduced rate.Please note all rates are subject to availability.Flemings MayfairHalf Moon Street Mayfair London W1Y 7RA Tel: + 44 (0)20 7499 2964 Fax: + 44 (0)20 7499 1817 Standard Single £190 + VATThe Cavendish London81 Jermyn Street London SW1U 6JF Tel: + 44 (0)20 7930 2111 Fax: + 44 (0)20 7839 2125 Standard Single £205 + VATTo book The Cavendish onlineThe Stafford London by KempinskiSt James's PlaceLondonSW1A 1NJTel: 020 7518 1125Fax: 020 7493 7121Standard Single £230 +VAT Monday 21 October 2013Session OneBridging the Gap Between Science and Policy09:00 - 10:10What are the latest findings from climate science and the IPCC? Is the world on track for global decarbonisation? Is dangerous anthropogenic climate change avoidable?To what extent are future climate risks sufficiently incorporated into policy thinking or investment strategies?Welcome AddressBernice Lee, Research Director, Energy, Environment and Resources, Chatham HouseChairMichael Anderson, Chief Executive Officer, Children’s Investment Fund Foundation Keynote AddressProfessor Hans Joachim Schellnhuber, Founding Director, Potsdam Institute for Climate Impact Research (PIK)SpeakersProfessor Tim Benton, UK Champion for Global Food Security and Professor of Population Ecology, Leeds UniversitySir David King, Foreign Secretary’s Special Representative for Climate ChangeQuestions and Discussion10:10 - 10:40 RefreshmentsSession TwoGlobal Deal in 2015: Challenges and Prospects10:40 - 12:40What will a global deal in 2015 look like? Will there be specific targets or non-binding sets of approaches? What are the building blocks?What is the value and track record of different kind of climate initiatives? For example, how successful are formal agreements compared to voluntary partnerships; climate-driven aid; or business coalitions? What are the main functions and institutions of the evolving international climate regime? What is the role of the UNFCCC? Is reform an option given the timeframe? What is the role for groupings like the G20 or the G8?ChairBernice Lee, Research Director, Energy, Environment and Resources, Chatham House Keynote AddressesChristiana Figueres, Executive Secretary, United Nations Framework Convention on Climate Change (UNFCCC) (on the record)Marcin Korolec, Minister of Environment, Poland and President, COP 19, UN Framework Convention on Climate Change (UNFCCC)Questions and DiscussionSpeakersNick Mabey, Chief Executive Officer, E3GFarhana Yamin, Associate Fellow, Chatham House Laurence Tubiana, Director, The Institute for Sustainable Development and International Relations (IDDRI)Questions and Discussion1240 - 14:00 LunchChairBernice Lee, Research Director, Energy, Environment and Resources, Chatham HouseKeynote AddressGregory Barker, Minister of State for Energy and Climate Change, United Kingdom (on the record)Questions and DiscussionSession ThreeClimate-Resilient Development: Views from Developing Countries14:30 - 16:10What are the drivers of domestic climate action in developing countries?What do developing countries need from the international climate regime: e.g. with respect to finance, ‘loss and damage’ and disaster preparedness? How will the politics among developing countries evolve? Has the G77 been eclipsed by the emergence of BASIC and other developing country alliances?ChairSam Bickersteth, Chief Executive, The Climate and Development Knowledge Network (CDKN)Keynote AddressesDr Atiur Rahman, Governor, Bangladesh BankSenator Tony deBrum, Minister-in-Assistance to the President, Republic of Marshall IslandsQuestions and DiscussionSpeakersMartin Khor, Director, South Centre Pa Ousman Jarju, Special Envoy for Climate Change, Republic of the GambiaQuestions and Discussion16:10 - 16:30 RefreshmentsSession Four Preparing for 2015: The Role of Major Economies16:30 - 17:30Do countries have clear understandings of how climate risks will reshape their national interests? How will these risks affect other agendas e.g. future economic competitiveness, resource security, public health, foreign policy, or disaster preparedness?How will major countries manage competing domestic priorities when preparing their national positions in the run-up to 2015? What is the evolving trilateral US-China-EU dynamic? Can the EU provide the necessary leadership?Are national investment systems capable of scaling up financing to deliver climate action in key countries like US, EU, China and India?Chair Bernice Lee, Research Director, Energy, Environment and Resources, Chatham HouseSpeakersDavid Hone, Climate Change Adviser, ShellJennifer Morgan, Director of the Climate and Energy Program, World Resources Institute Rear Admiral Neil Morisetti, Foreign Secretary’s Special Representative for Climate Change, United KingdonMutsuyoshi Nishimura, Visiting Research Fellow, Japan Institute of International affairs and Former Special Adviser to the Cabinet in charge of Climate Change, Japan Questions and Discussion17:30 End of day one and drinks reception hosted by Chatham HouseDAY TWOTuesday 22 October 09:30 - 15:10Session FiveThe Changing Global Energy Landscape: Implications for Decarbonization09:30 - 10:45What are the implications of the ‘golden age of gas’? What will growing coal use in many developing economies mean for climate politics?What is the prospect for scaling up renewable investments – given the lessons learned vis-à-vis the scale, speed and cost of low carbon technologies over the past five years?What are the contributions of off-grid, distributive generation and other demand side measures like efficiency?ChairDavid Hone, Climate Change Adviser, ShellModerated Panel Discussion Reid Detchon, Vice President for Energy and Climate, United Nations FoundationGiles Dickson, Vice President, Environmental Policies & Global Advocacy, Alstom Antony Froggatt, Senior Research Fellow, Chatham HouseQuestions and Discussion10:45 - 11:15 RefreshmentsSession Six Climate Policy and Finance: The Emerging Toolkit11:15 - 12:30What is the track record of policies and measures to tackle CO2 emissions – from carbon markets, standards and subsidies removal to taxation? What is the progress on tackling non-CO2 greenhouse gases? The cost of climate impacts has been escalating. What are the emerging tools (e.g. disaster preparedness, climate-proof aid or insurance) for managing the impacts? What is the role of public versus private finance for different countries? What is the role of multilateral financing institutions in facilitating the increasingly large finance flows required?ChairCameron Hepburn, Professor of Environmental Economics, Smith School and INET at Oxford Martin School, University of Oxford, and Professorial Research Fellow at the Grantham Research Institute at the LSESpeakersDr Johan Kuylenstierna, Deputy- Director, Stockholm Environment Institute, University of York Cameron Hepburn, Professor of environmental economics, Smith School and INET at Oxford Martin School, University of Oxford, and Professorial Research Fellow at the Grantham Research Institute at the LSEJames Leaton, Project Director, Carbon Tracker Fraser Thompson, Senior Fellow, McKinsey Global InstituteQuestions and Discussion12:30 -13:30 Lunch13.:30 -14:00ChairBernice Lee, Research Director, Energy, Environment and Resources, Chatham HouseKeynote AddressTodd Stern, Special Envoy for Climate Change, United States Department of StateQuestions and DiscussionSession SevenBuilding the Progressive Conditions for 201514:00 - 15:10Can the international community harness progressive leadership – through coalitions of governments, businesses and/or NGOs? What are the political or mobilisation strategies needed to tackle domestic climate scepticism, build progressive coalitions and neutralise vested interests at different levels? What are the implications of the post-2015 development discussions for climate change? ChairDominic Waughray, Senior Director, Head of Environmental Initiatives, World Economic ForumModerated Panel DiscussionFrances Beinecke, President, Natural Resources Defense Council Alfred Evans, Chief Executive Officer, Climate Change CapitalKate Hampton, Executive Director, Climate Change, Children's Investment Fund Foundation Amina Mohammed, Special Adviser on Post-2015 Development Planning, United NationsQuestions and Discussion15:10 Close of Conference© The Royal Institute of International Affairs 2013 This conference will offer a unique opportunity to network with senior officials from businesses, government, NGO's and academic institutions.Our previous Climate Change conferences saw delegates from companies and institutions such as:AccentureAEA Energy & EnvironmentAgulhasArcelorMittalAssociation of Asia Pacific Airlines (AAPA)Atkins LtdBASF plcBayerngas Norge ASBeetle CapitalBG Group plcBHP BillitonBIRA-IASBBooz & CoBP plcBritish CouncilBT Group plcCairn Energy plcCambridge Centre for Energy StudiesCambridge Programme for Sustainable LeadershipCarbon Capture and Storage AssociationCarbon LeapfrogCarbon TrustCaritas InternationalisCatholic Fund for Overseas Development (CAFOD)CH2M HillChamber of ShippingChevron LtdChubu Electric Power Co IncClientEarthClifford Chance LLPClimate & Development Knowledge Network (CDKN)Climate Action Network (CAN)Climate and Health CouncilClimate SecureCoalition for an International Court for the Environment (ICE Coalition)Compassion in World Farming (CIWF)Conocophillips (UK) LtdControl RisksCo-operative GroupCranfield UniversityDeloitte Consulting LLPDepartment for Business, Innovation & Skills (BIS)Department for International Development (DFID)Department of Energy and Climate Change (DECC)Ecofys UK LtdEcologic InstituteEDF EnergyEnergy Charter SecretariatEnergy Technologies InstituteEni S.p.AEnvironment AgencyEnvironmental Law Foundation (ELF)Environmental Protection Agency (EPA)Environmental Resources Management (ERM)ENWORKSErnst & YoungEthical Investment Research Services Ltd (EIRIS)European Bank For Reconstruction & DevelopmentEuropean Commission (Directorate General for Enterprise and Industry)European ParliamentExxonMobil International LtdFauna & Flora InternationalFIA Foundation for the Automobile and SocietyFinnish Forest AssociationForeign and Commonwealth Office (FCO)Forestry CommissionFriends of the EarthGenesis Investment Management LLPGLG Partners LPGlobal CCS InstituteGlobal Humanitarian ForumGlobal Sustainability InstituteGlobal WitnessGlobeleq LtdGrantham Research Institute on Climate Change and the Environment, LSEGreater Manchester Chamber of CommerceGreenpeace InternationalHerbert Smith Freehills LLPHM TreasuryImperial College LondonINPEX CorporationInstitute for Public Policy Research (IPPR)Institutional Investors Group on Climate Change (IIGCC)International Association of Oil & Gas ProducersInternational Council on Mining and MetalsInternational Finance Corporation (IFC)International Institute for Environment and Development (IIED)International Organization for Standardization (ISO)Japan External Trade Organization (JETRO)Joseph Rowntree FoundationJPMorganKing's College LondonKPMGKuwait Petroleum CorporationLondon AssemblyLondon Metropolitan UniversityLondon School of Economics and Political Science (LSE)Maersk GroupMassey UniversityMcKinsey & CompanyMETREXMinistere des Affaires Etrangeres, FranceMinistry of Defence (Development, Concepts and Doctrine Centre)Ministry of Foreign Affairs, NetherlandsMinistry of Foreign Affairs, FinlandMinistry of Foreign Affairs, PolandMinistry of Infrastructure and the EnvironmentMitsubishi CorporationNational Farmers' UnionNational Round Table on the Environment and the EconomyNetherlands Development Finance Company (FMO)NEXUS SingaporeOffice of National AssessmentsOgilvyOpen Society FoundationOverseas Development Institute (ODI)Oxford UniversityPlan UKPricewaterhouseCoopers LLPPrivy Council OfficeProgressioQuaker Peace and Social WitnessQuébec Government OfficeRenewable Energy and Energy Efficiency Partnership (REEEP)Renewable Energy Systems Ltd (RES)Rolls-Royce International LtdRWE Power AGSave the Children UKSCA, Svenska Cellulosa AktiebolagetSchool of Oriental and African Studies (SOAS)Standard Chartered Bank plcStatoil (UK) LtdSustainAbility LtdSwedish Defence Research Agency (FOI)Swiss Agency for Development and Cooperation SDCTask ConsultTexas A&M UniversityThe 40 FoundationThe Climate GroupThe Gold Standard FoundationThe Norwegian Institute for Nature ResearchThe Open UniversityThe Prince of Wales Corporate Leader GroupThe Royal SocietyThe Saudi Fund For DevelopmentTokyo Electric Power CompanyTotal Holdings UK LtdUK Chamber of ShippingUK Collaborative on Development Sciences (UKCDS)United Nations Environment Programme (UNEP)University College London (UCL)University of CambridgeUniversity of East Anglia (School of Environmental Sciences)University of EdinburghUniversity of Oxford (Department of Politics and International Relations)US Department of StateUSAIDWarwick Business SchoolWaterAidWorld Coal AssociationWorld Coal InstituteWorld Economic ForumWorld Society for the Protection of Animals (WSPA)World Vision UKWWF-UKXynteo LtdYorkshire Forward Full Article
ncr HB-EGF Signaling Is Required for Glucose-Induced Pancreatic {beta}-Cell Proliferation in Rats By diabetes.diabetesjournals.org Published On :: 2020-02-20T11:55:30-08:00 The molecular mechanisms of β-cell compensation to metabolic stress are poorly understood. We previously observed that nutrient-induced β-cell proliferation in rats is dependent on epidermal growth factor receptor (EGFR) signaling. The aim of this study was to determine the role of the EGFR ligand heparin-binding EGF-like growth factor (HB-EGF) in the β-cell proliferative response to glucose, a β-cell mitogen and key regulator of β-cell mass in response to increased insulin demand. We show that exposure of isolated rat and human islets to HB-EGF stimulates β-cell proliferation. In rat islets, inhibition of EGFR or HB-EGF blocks the proliferative response not only to HB-EGF but also to glucose. Furthermore, knockdown of HB-EGF in rat islets blocks β-cell proliferation in response to glucose ex vivo and in vivo in transplanted glucose-infused rats. Mechanistically, we demonstrate that HB-EGF mRNA levels are increased in β-cells in response to glucose in a carbohydrate-response element–binding protein (ChREBP)–dependent manner. In addition, chromatin immunoprecipitation studies identified ChREBP binding sites in proximity to the HB-EGF gene. Finally, inhibition of Src family kinases, known to be involved in HB-EGF processing, abrogated glucose-induced β-cell proliferation. Our findings identify a novel glucose/HB-EGF/EGFR axis implicated in β-cell compensation to increased metabolic demand. Full Article
ncr Lipid Droplet Accumulation in Human Pancreatic Islets Is Dependent On Both Donor Age and Health By diabetes.diabetesjournals.org Published On :: 2020-02-20T11:55:30-08:00 Human but not mouse islets transplanted into immunodeficient NSG mice effectively accumulate lipid droplets (LDs). Because chronic lipid exposure is associated with islet β-cell dysfunction, we investigated LD accumulation in the intact human and mouse pancreas over a range of ages and states of diabetes. Very few LDs were found in normal human juvenile pancreatic acinar and islet cells, with numbers subsequently increasing throughout adulthood. While accumulation appeared evenly distributed in postjuvenile acinar and islet cells in donors without diabetes, LDs were enriched in islet α- and β-cells from donors with type 2 diabetes (T2D). LDs were also found in the islet β-like cells produced from human embryonic cell–derived β-cell clusters. In contrast, LD accumulation was nearly undetectable in the adult rodent pancreas, even in hyperglycemic and hyperlipidemic models or 1.5-year-old mice. Taken together, there appear to be significant differences in pancreas islet cell lipid handling between species, and the human juvenile and adult cell populations. Moreover, our results suggest that LD enrichment could be impactful to T2D islet cell function. Full Article
ncr Insulin-Deficient Diabetic Condition Upregulates the Insulin-Secreting Capacity of Human Induced Pluripotent Stem Cell-Derived Pancreatic Endocrine Progenitor Cells After Implantation in Mice By diabetes.diabetesjournals.org Published On :: 2020-03-20T11:50:28-07:00 The host environment is a crucial factor for considering the transplant of stem cell–derived immature pancreatic cells in patients with type 1 diabetes. Here, we investigated the effect of insulin (INS)-deficient diabetes on the fate of immature pancreatic endocrine cell grafts and the underlying mechanisms. Human induced pluripotent stem cell–derived pancreatic endocrine progenitor cells (EPCs), which contained a high proportion of chromogranin A+ NK6 homeobox 1+ cells and very few INS+ cells, were used. When the EPCs were implanted under the kidney capsule in immunodeficient mice, INS-deficient diabetes accelerated increase in plasma human C-peptide, a marker of graft-derived INS secretion. The acceleration was suppressed by INS infusion but not affected by partial attenuation of hyperglycemia by dapagliflozin, an INS-independent glucose-lowering agent. Immunohistochemical analyses indicated that the grafts from diabetic mice contained more endocrine cells including proliferative INS-producing cells compared with that from nondiabetic mice, despite no difference in whole graft mass between the two groups. These data suggest that INS-deficient diabetes upregulates the INS-secreting capacity of EPC grafts by increasing the number of endocrine cells including INS-producing cells without changing the graft mass. These findings provide useful insights into postoperative diabetic care for cell therapy using stem cell–derived pancreatic cells. Full Article
ncr Pancreas Pathology of Latent Autoimmune Diabetes in Adults (LADA) in Patients and in a LADA Rat Model Compared With Type 1 Diabetes By diabetes.diabetesjournals.org Published On :: 2020-03-20T11:50:28-07:00 Approximately 10% of patients with type 2 diabetes suffer from latent autoimmune diabetes in adults (LADA). This study provides a systematic assessment of the pathology of the endocrine pancreas of patients with LADA and for comparison in a first rat model mimicking the characteristics of patients with LADA. Islets in human and rat pancreases were analyzed by immunohistochemistry for immune cell infiltrate composition, by in situ RT-PCR and quantitative real-time PCR of laser microdissected islets for gene expression of proinflammatory cytokines, the proliferation marker proliferating cell nuclear antigen (PCNA), the anti-inflammatory cytokine interleukin (IL) 10, and the apoptosis markers caspase 3 and TUNEL as well as insulin. Human and rat LADA pancreases showed differences in areas of the pancreas with respect to immune cell infiltration and a changed ratio between the number of macrophages and CD8 T cells toward macrophages in the islet infiltrate. Gene expression analyses revealed a changed ratio due to an increase of IL-1β and a decrease of tumor necrosis factor-α. IL-10, PCNA, and insulin expression were increased in the LADA situation, whereas caspase 3 gene expression was reduced. The analyses into the underlying pathology in human as well as rat LADA pancreases provided identical results, allowing the conclusion that LADA is a milder form of autoimmune diabetes in patients of an advanced age. Full Article
ncr Astros open camp with bar 'set incredibly high' By mlb.mlb.com Published On :: Wed, 13 Feb 2019 12:14:03 EDT With this many stars and this much talent, you can't help but have visions of playing baseball deep into October. And considering it was only a year ago the Astros were talking about defending their World Series title, their window to win another one remains wide open. Full Article
ncr Patrick Keating GP - under pressure to increase list size By feeds.bmj.com Published On :: Wed, 11 Mar 2015 14:55:51 +0000 BMJ Voices is a collection of readers’ experiences of working in the NHS. For this, The BMJ is seeking short audio submissions from UK listeners. These submissions will be published on thebmj.com. Patrick Keating, a GP from Enfield, is concerned that small practices are under pressure to increase list size, but aren't able to muster resources to... Full Article
ncr James Kinross and Chris Hankin WannCry about NHS IT By feeds.bmj.com Published On :: Fri, 14 Jul 2017 16:13:20 +0000 Earlier this year, the WannaCry ransomeware attack took control of computers in 40 NHS trusts, blocking access to the data held on them. This wasn’t the first time that NHS computers had been infected by malware, but it brought the danger of cyber attack into the consciousness of doctors and patients. In this podcast we hear from two people who... Full Article
ncr Telephone consultations - no cost savings, but increased GP workload By feeds.bmj.com Published On :: Thu, 28 Sep 2017 15:02:02 +0000 If you're a patient in the UK, increasingly, your first interaction with the healthcare system won't be the traditional face to fact chat with your doctor - instead you'll have a telephone consultation. The prevalence of these telephone consultations is increasing, and being promoted by CCGs and private companies who administer them - usually as... Full Article
ncr Is opt-out the best way to increase organ donation? By feeds.bmj.com Published On :: Fri, 22 Mar 2019 16:43:46 +0000 As England’s presumed consent law for 2020 clears parliament, Veronica English, head of medical ethics and human rights at the BMA, say that evidence from Wales and other countries shows that it could increase transplantation rates. But Blair L Sadler, physician and senior adviser to California State University, consider such legal changes a... Full Article
ncr Mechanisms of Pancreatic {beta}-Cell Death in Type 1 and Type 2 Diabetes: Many Differences, Few Similarities By diabetes.diabetesjournals.org Published On :: 2005-12-01 Miriam CnopDec 1, 2005; 54:S97-S107Section III: Inflammation and beta-Cell Death Full Article
ncr Exendin-4 stimulates both beta-cell replication and neogenesis, resulting in increased beta-cell mass and improved glucose tolerance in diabetic rats By diabetes.diabetesjournals.org Published On :: 1999-12-01 G XuDec 1, 1999; 48:2270-2276Articles Full Article
ncr Method for the Isolation of Intact Islets of Langerhans from the Rat Pancreas By diabetes.diabetesjournals.org Published On :: 1967-01-01 Paul E LacyJan 1, 1967; 16:35-39Original Contribution Full Article
ncr PPAR{gamma} Ligands Increase Expression and Plasma Concentrations of Adiponectin, an Adipose-Derived Protein By diabetes.diabetesjournals.org Published On :: 2001-09-01 Norikazu MaedaSep 1, 2001; 50:2094-2099Pathophysiology Full Article