crop NF-{kappa}B mediates lipopolysaccharide-induced alternative pre-mRNA splicing of MyD88 in mouse macrophages [Signal Transduction] By www.jbc.org Published On :: 2020-05-01T00:06:09-07:00 Although a robust inflammatory response is needed to combat infection, this response must ultimately be terminated to prevent chronic inflammation. One mechanism that terminates inflammatory signaling is the production of alternative mRNA splice forms in the Toll-like receptor (TLR) signaling pathway. Whereas most genes in the TLR pathway encode positive mediators of inflammatory signaling, several, including that encoding the MyD88 signaling adaptor, also produce alternative spliced mRNA isoforms that encode dominant-negative inhibitors of the response. Production of these negatively acting alternatively spliced isoforms is induced by stimulation with the TLR4 agonist lipopolysaccharide (LPS); thus, this alternative pre-mRNA splicing represents a negative feedback loop that terminates TLR signaling and prevents chronic inflammation. In the current study, we investigated the mechanisms regulating the LPS-induced alternative pre-mRNA splicing of the MyD88 transcript in murine macrophages. We found that 1) the induction of the alternatively spliced MyD88 form is due to alternative pre-mRNA splicing and not caused by another RNA regulatory mechanism, 2) MyD88 splicing is regulated by both the MyD88- and TRIF-dependent arms of the TLR signaling pathway, 3) MyD88 splicing is regulated by the NF-κB transcription factor, and 4) NF-κB likely regulates MyD88 alternative pre-mRNA splicing per se rather than regulating splicing indirectly by altering MyD88 transcription. We conclude that alternative splicing of MyD88 may provide a sensitive mechanism that ensures robust termination of inflammation for tissue repair and restoration of normal tissue homeostasis once an infection is controlled. Full Article
crop Seafloor currents may direct microplastics to biodiversity hotspots of the deep By www.eurekalert.org Published On :: Thu, 30 Apr 2020 00:00:00 EDT (American Association for the Advancement of Science) Microplastic particles entering the sea surface were thought to settle to the seafloor directly below them, but now, a new study reveals that slow-moving currents near the bottom of the ocean direct the flow of plastics, creating microplastic hotpots in sediments of the deep sea. Full Article
crop Scientists find highest ever level of microplastics on seafloor By www.eurekalert.org Published On :: Thu, 30 Apr 2020 00:00:00 EDT (University of Manchester) An international research project has revealed the highest levels of microplastic ever recorded on the seafloor, with up to 1.9 million pieces in a thin layer covering just 1 square meter. Full Article
crop Folate Receptor {beta} Targeted PET Imaging of Macrophages in Autoimmune Myocarditis By jnm.snmjournals.org Published On :: 2020-04-13T14:09:24-07:00 Rationale: Currently available imaging techniques have limited specificity for the detection of active myocardial inflammation. Aluminum fluoride-18-labeled 1,4,7-triazacyclononane-N,N',N''-triacetic acid conjugated folate (18F-FOL) is a positron emission tomography (PET) tracer targeting folate receptor β (FR-β) that is expressed on activated macrophages at sites of inflammation. We evaluated 18F-FOL PET for the detection of myocardial inflammation in rats with autoimmune myocarditis and studied expression of FR-β in human cardiac sarcoidosis specimens. Methods: Myocarditis was induced by immunizing rats (n = 18) with porcine cardiac myosin in complete Freund’s adjuvant. Control rats (n = 6) were injected with Freund’s adjuvant alone. 18F-FOL was intravenously injected followed by imaging with a small animal PET/computed tomography (CT) scanner and autoradiography. Contrast-enhanced high-resolution CT or 2-deoxy-2-18F-fluoro-D-glucose (18F-FDG) PET images were used for co-registration. Rat tissue sections and myocardial autopsy samples of 6 patients with cardiac sarcoidosis were studied for macrophages and FR-β. Results: The myocardium of 10 out of 18 immunized rats showed focal macrophage-rich inflammatory lesions with FR-β expression occurring mainly in M1-polarized macrophages. PET images showed focal myocardial 18F-FOL uptake co-localizing with inflammatory lesions (SUVmean, 2.1 ± 1.1), whereas uptake in the remote myocardium of immunized rats and controls was low (SUVmean, 0.4 ± 0.2 and 0.4 ± 0.1, respectively; P < 0.01). Ex vivo autoradiography of tissue sections confirmed uptake of 18F-FOL in myocardial inflammatory lesions. Uptake of 18F-FOL to inflamed myocardium was efficiently blocked by a non-labeled FR-β ligand folate glucosamine in vivo. The myocardium of patients with cardiac sarcoidosis showed many FR-β-positive macrophages in inflammatory lesions. Conclusion: In a rat model of autoimmune myocarditis, 18F-FOL shows specific uptake in inflamed myocardium containing macrophages expressing FR-β, which were also present in human cardiac sarcoid lesions. Imaging of FR-β expression is a potential approach for the detection of active myocardial inflammation. Full Article
crop Proteomic Analysis of Salmonella-modified Membranes Reveals Adaptations to Macrophage Hosts [Research] By feedproxy.google.com Published On :: 2020-05-01T00:05:26-07:00 Systemic infection and proliferation of intracellular pathogens require the biogenesis of a growth-stimulating compartment. The gastrointestinal pathogen Salmonella enterica commonly forms highly dynamic and extensive tubular membrane compartments built from Salmonella-modified membranes (SMMs) in diverse host cells. Although the general mechanism involved in the formation of replication-permissive compartments of S. enterica is well researched, much less is known regarding specific adaptations to different host cell types. Using an affinity-based proteome approach, we explored the composition of SMMs in murine macrophages. The systematic characterization provides a broader landscape of host players to the maturation of Salmonella-containing compartments and reveals core host elements targeted by Salmonella in macrophages as well as epithelial cells. However, we also identified subtle host specific adaptations. Some of these observations, such as the differential involvement of the COPII system, Rab GTPases 2A, 8B, 11 and ER transport proteins Sec61 and Sec22B may explain cell line-dependent variations in the pathophysiology of Salmonella infections. In summary, our system-wide approach demonstrates a hitherto underappreciated impact of the host cell type in the formation of intracellular compartments by Salmonella. Full Article
crop Macrophage polarization is linked to Ca2+-independent phospholipase A2{beta}-derived lipids and cross-cell signaling in mice [Research Articles] By feedproxy.google.com Published On :: 2020-02-01T00:05:23-08:00 Phospholipases A2 (PLA2s) catalyze hydrolysis of the sn-2 substituent from glycerophospholipids to yield a free fatty acid (i.e., arachidonic acid), which can be metabolized to pro- or anti-inflammatory eicosanoids. Macrophages modulate inflammatory responses and are affected by Ca2+-independent phospholipase A2 (PLA2)β (iPLA2β). Here, we assessed the link between iPLA2β-derived lipids (iDLs) and macrophage polarization. Macrophages from WT and KO (iPLA2β–/–) mice were classically M1 pro-inflammatory phenotype activated or alternatively M2 anti-inflammatory phenotype activated, and eicosanoid production was determined by ultra-performance LC ESI-MS/MS. As a genotypic control, we performed similar analyses on macrophages from RIP.iPLA2β.Tg mice with selective iPLA2β overexpression in β-cells. Compared with WT, generation of select pro-inflammatory prostaglandins (PGs) was lower in iPLA2β–/–, and that of a specialized pro-resolving lipid mediator (SPM), resolvin D2, was higher; both changes are consistent with the M2 phenotype. Conversely, macrophages from RIP.iPLA2β.Tg mice exhibited an opposite landscape, one associated with the M1 phenotype: namely, increased production of pro-inflammatory eicosanoids (6-keto PGF1α, PGE2, leukotriene B4) and decreased ability to generate resolvin D2. These changes were not linked with secretory PLA2 or cytosolic PLA2α or with leakage of the transgene. Thus, we report previously unidentified links between select iPLA2β-derived eicosanoids, an SPM, and macrophage polarization. Importantly, our findings reveal for the first time that β-cell iPLA2β-derived signaling can predispose macrophage responses. These findings suggest that iDLs play critical roles in macrophage polarization, and we posit that they could be targeted therapeutically to counter inflammation-based disorders. Full Article
crop Role of pyruvate kinase M2 in oxidized LDL-induced macrophage foam cell formation and inflammation [Research Articles] By feedproxy.google.com Published On :: 2020-03-01T00:06:33-08:00 Pyruvate kinase M2 (PKM2) links metabolic and inflammatory dysfunction in atherosclerotic coronary artery disease; however, its role in oxidized LDL (Ox-LDL)-induced macrophage foam cell formation and inflammation is unknown and therefore was studied. In recombinant mouse granulocyte-macrophage colony-stimulating factor-differentiated murine bone marrow-derived macrophages, early (1–6 h) Ox-LDL treatment induced PKM2 tyrosine 105 phosphorylation and promotes its nuclear localization. PKM2 regulates aerobic glycolysis and inflammation because PKM2 shRNA or Shikonin abrogated Ox-LDL-induced hypoxia-inducible factor-1α target genes lactate dehydrogenase, glucose transporter member 1, interleukin 1β (IL-1β) mRNA expression, lactate, and secretory IL-1β production. PKM2 inhibition significantly increased Ox-LDL-induced ABCA1 and ABCG1 protein expression and NBD-cholesterol efflux to apoA1 and HDL. PKM2 shRNA significantly inhibited Ox-LDL-induced CD36, FASN protein expression, DiI-Ox-LDL binding and uptake, and cellular total cholesterol, free cholesterol, and cholesteryl ester content. Therefore, PKM2 regulates lipid uptake and efflux. DASA-58, a PKM2 activator, downregulated LXR-α, ABCA1, and ABCG1, and augmented FASN and CD36 protein expression. Peritoneal macrophages showed similar results. Ox-LDL induced PKM2- SREBP-1 interaction and FASN expression in a PKM2-dependent manner. Therefore, this study suggests a role for PKM2 in Ox-LDL-induced aerobic glycolysis, inflammation, and macrophage foam cell formation. Full Article
crop The ins and outs of lipid rafts: functions in intracellular cholesterol homeostasis, microparticles, and cell membranes [Thematic Reviews] By feedproxy.google.com Published On :: 2020-05-01T00:05:27-07:00 Cellular membranes are not homogenous mixtures of proteins; rather, they are segregated into microdomains on the basis of preferential association between specific lipids and proteins. These microdomains, called lipid rafts, are well known for their role in receptor signaling on the plasma membrane (PM) and are essential to such cellular functions as signal transduction and spatial organization of the PM. A number of disease states, including atherosclerosis and other cardiovascular disorders, may be caused by dysfunctional maintenance of lipid rafts. Lipid rafts do not occur only in the PM but also have been found in intracellular membranes and extracellular vesicles (EVs). Here, we focus on discussing newly discovered functions of lipid rafts and microdomains in intracellular membranes, including lipid and protein trafficking from the ER, Golgi bodies, and endosomes to the PM, and we examine lipid raft involvement in the production and composition of EVs. Because lipid rafts are small and transient, visualization remains challenging. Future work with advanced techniques will continue to expand our knowledge about the roles of lipid rafts in cellular functioning. Full Article
crop 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
crop Pharmacologic PPAR-{gamma} Activation Reprograms Bone Marrow Macrophages and Partially Rescues HSPC Mobilization in Human and Murine Diabetes By diabetes.diabetesjournals.org Published On :: 2020-04-28T07:09:24-07:00 Mobilization of hematopoietic stem/progenitor cells (HSPCs) from the bone marrow (BM) is impaired in diabetes. Excess oncostatin M (OSM) produced by M1 macrophages in the diabetic BM signals through p66Shc to induce Cxcl12 in stromal cells and retain HSPCs. BM adipocytes are another source of CXCL12 that blunts mobilization. We tested a strategy of pharmacologic macrophage reprogramming to rescue HSPC mobilization. In vitro, PPAR- activation with pioglitazone switched macrophages from M1 to M2, reduced Osm expression, and prevented transcellular induction of Cxcl12. In diabetic mice, pioglitazone treatment downregulated Osm, p66Shc and Cxcl12 in the hematopoietic BM, restored the effects of granulocyte-colony stimulation factor (G-CSF), and partially rescued HSPC mobilization, but it increased BM adipocytes. Osm deletion recapitulated the effects of pioglitazone on adipogenesis, which was p66Shc-independent, and double knockout of Osm and p66Shc completely rescued HSPC mobilization. In the absence of OSM, BM adipocytes produced less CXCL12, being arguably devoid of HSPC-retaining activity, whereas pioglitazone failed to downregulate Cxcl12 in BM adipocytes. In diabetic patients under pioglitazone therapy, HSPC mobilization after G-CSF was partially rescued. In summary, pioglitazone reprogrammed BM macrophages and suppressed OSM signaling, but sustained Cxcl12 expression by BM adipocytes could limit full recovery of HSPC mobilization. Full Article
crop The Histone Methyltransferase MLL1 Directs Macrophage-Mediated Inflammation in Wound Healing and Is Altered in a Murine Model of Obesity and Type 2 Diabetes By diabetes.diabetesjournals.org Published On :: 2017-09-01 Andrew S. KimballSep 1, 2017; 66:2459-2471Immunology and Transplantation Full Article
crop Priming-mediated stress and cross-stress tolerance in crop plants By dal.novanet.ca Published On :: Fri, 1 May 2020 19:44:43 -0300 Callnumber: OnlineISBN: 9780128178935 (electronic bk.) Full Article
crop Integrated pest and disease management in greenhouse crops By dal.novanet.ca Published On :: Fri, 1 May 2020 19:44:43 -0300 Callnumber: OnlineISBN: 9783030223045 electronic book Full Article
crop Genomic designing of climate-smart vegetable crops By dal.novanet.ca Published On :: Fri, 1 May 2020 19:44:43 -0300 Callnumber: OnlineISBN: 9783319974156 (electronic bk.) Full Article
crop Cotton production and uses : agronomy, crop protection, and postharvest technologies By dal.novanet.ca Published On :: Fri, 1 May 2020 19:44:43 -0300 Callnumber: OnlineISBN: 9789811514722 Full Article
crop Chickpea : crop wild relatives for enhancing genetic gains By dal.novanet.ca Published On :: Fri, 1 May 2020 19:44:43 -0300 Callnumber: OnlineISBN: 9780128183007 (electronic bk.) Full Article
crop Agronomic crops. By dal.novanet.ca Published On :: Fri, 1 May 2020 19:44:43 -0300 Callnumber: OnlineISBN: 9789811500251 (electronic bk.) Full Article
crop 6 more super crops with strong nutritional properties By www.fao.org Published On :: Wed, 23 Dec 2015 00:00:00 GMT At the beginning of the year we took a tour of 6 incredible plants you might not have heard of. Diets worldwide – from forest roots and leaves such as the moringa in Africa and parts of Asia to cardoon, the close relative of the artichoke in Europe – are varied, suited to local environment and can counter malnutrition and [...] Full Article
crop Orphan crops can bring food security to millions of people By www.fao.org Published On :: Wed, 07 Sep 2016 00:00:00 GMT Smallholders and people living in rural areas in Africa grow a huge variety of edible plants other than rice, wheat or maize. These crops, including the African yam bean, have long been neglected although they represent an excellent alternative food supplement to most diets. Grown in pockets of tropical Central, West and East Africa, the African yam bean (Sphenostylis stenocarpa) [...] Full Article
crop Invasive Snails Might Save Coffee Crops From Fungus, but Experts Advise Caution By www.smithsonianmag.com Published On :: Wed, 11 Mar 2020 17:46:34 +0000 The snails are an invasive crop pest that are known to eat more than just coffee rust Full Article
crop Crop Progress By feedproxy.google.com Published On :: 2020-05-09T15:10:10Z This full text file contains reports, issued weekly during the growing season (April to November), which lists planting, fruiting, and harvesting progress and overall condition of selected crops in major producing states. The data, summarized by crop and by state, are republished along with any revisions in the Weekly Weather and Crop Bulletin. During the months of December through March, the report is issued monthly titled State Stories. Full Article
crop Crop Progress By feedproxy.google.com Published On :: 2020-05-09T15:10:51Z This full text file contains reports, issued weekly during the growing season (April to November), which lists planting, fruiting, and harvesting progress and overall condition of selected crops in major producing states. The data, summarized by crop and by state, are republished along with any revisions in the Weekly Weather and Crop Bulletin. During the months of December through March, the report is issued monthly titled State Stories. Full Article
crop International and domestic interactions of macroprudential and monetary policies: the case of Chile By si2.bcentral.cl Published On :: 2020-04-01T00:00:00Z Central Bank of Chile Working Papers by Tomás Gómez, Alejandro Jara and David Moreno Full Article
crop Grants available for Delaware crop promotion and research By news.delaware.gov Published On :: Wed, 30 Apr 2014 16:39:17 +0000 More than $336,000 in federal grant funding is now available for projects to help produce, market or access Delaware-grown fruit, vegetables and certain other crops. Full Article Department of Agriculture Sussex County agriculture
crop $300,000 awarded to Delaware crop projects By news.delaware.gov Published On :: Tue, 18 Oct 2016 15:39:57 +0000 Eight educational and research projects supporting Delaware crops will receive more than $300,000 in federal funding. Full Article Department of Agriculture
crop Grants available for education, marketing, and research of specialty crops By news.delaware.gov Published On :: Tue, 21 Mar 2017 15:49:15 +0000 Nearly $300,000 in federal grant funding is now available for projects to help increase the competitiveness of Delaware-grown specialty crops. The Delaware Department of Agriculture is accepting applications for the Specialty Crop Block Grant Program through May 15, 2017. Full Article Department of Agriculture Delaware Department of Agriculture fruits specialty crops USDA Specialty Crop Block Grant vegetables
crop USDA seeks feedback from Delaware farmers on 2017 crop production and supply levels By news.delaware.gov Published On :: Tue, 23 May 2017 14:00:31 +0000 The Delaware Department of Agriculture is urging farmers to participate in the two major mid-year surveys, the June Agricultural Survey and the June Area Survey, conducted by USDA’s National Agricultural Statistics Service (NASS). NASS will survey nearly 400 farmers across Delaware to determine crop production and supply levels in 2017. “As an $8 billion industry, agriculture plays a major role in Delaware’s economy,” said Secretary of Agriculture Michael Scuse. “The information that our farmers provide is critical to helping everyone – from fellow farmers to lawmakers to extension professionals – make decisions that will impact our industry. It is critical that NASS has the most accurate data, so I urge Delaware farmers to participate in the June Surveys.” Full Article Department of Agriculture Delaware Department of Agriculture farmers NASS National Agricultural Statistics Service USDA
crop USDA seeks feedback from Delaware farmers on 2018 crop production and supply levels By news.delaware.gov Published On :: Wed, 23 May 2018 18:40:13 +0000 During the next several weeks, U.S. Department of Agriculture’s National Agricultural Statistics Service (NASS) will conduct two major mid-year surveys, the June Agricultural Survey and the June Area Survey. The agency will contact around 350 producers across Delaware to determine crop acreage and stock levels as of June 1, 2018. Full Article Department of Agriculture Delaware Department of Agriculture Delaware Secretary of Agriculture Delaware Secretary of Agriculture Michael T. Scuse farmers June Surveys NASS National Agricultural Statistics Service USDA
crop Delaware requests emergency declaration from USDA for crop damage due to recent storms By news.delaware.gov Published On :: Fri, 22 Jun 2018 11:51:29 +0000 DOVER, Del. — Too much rain at the wrong time, like Delaware experienced in April and May, has destroyed several high dollar crops and threatens the yield of many others, leaving farmers to wonder what the future holds. In surveying the state and listening to farmers, Secretary of Agriculture Michael T. Scuse made a request […] Full Article Agriculture Department of Agriculture Governor John Carney Office of the Governor crop damage crops emergency disaster declaration family farms farmers flooding Governor Carney loans rain Secretary of Agriculture Michael T. Scuse USDA
crop USDA to collect final 2018 crop production and crop stocks data By news.delaware.gov Published On :: Wed, 21 Nov 2018 17:29:05 +0000 As the 2018 growing season officially comes to an end, the U.S. Department of Agriculture’s National Agricultural Statistics Service (NASS) will contact producers in Delaware to gather final year-end crop production numbers and the amount of grain and oilseeds they store on their farms. At the same time, NASS will survey grain facility operators to determine year-end grain and oilseed stocks. Full Article Department of Agriculture crop crops NASS National Agricultural Statistics Service survey USDA
crop Delaware receives funds to increase locally grown specialty crops By news.delaware.gov Published On :: Tue, 19 Mar 2019 12:25:02 +0000 The Delaware Department of Agriculture announced today that they are seeking applications for this year’s Specialty Crop Block Grant Program, with nearly $359,000 allocated to assist in increasing the competitiveness of Delaware-grown specialty crops. Applications will be accepted through April 22, 2019. Full Article Department of Agriculture Delaware Department of Agriculture grant specialty crops USDA Specialty Crop Block Grant
crop Severe crop damage at Redden State Forest creates public deer harvest opportunities to assist local farmers By news.delaware.gov Published On :: Mon, 19 Aug 2019 12:03:40 +0000 DOVER, Del. — A recent increase in severe deer damage to agricultural crops on two portions of Redden State Forest in Sussex County has created public deer harvest opportunities to assist local farmers. Through a partnership with DNREC’s Division of Fish & Wildlife, the Delaware Department of Agriculture’s Forest Service is opening specific portions of […] Full Article Department of Agriculture Forest Service antlerless deer deer harvest Delaware Forest Service Delaware Sportsmen Against Hunger Program dnrec Redden State Forest severe deer crop damage
crop Govt sets record grains production target for crop year 2020-21 By www.financialexpress.com Published On :: 2020-04-17T04:35:00+05:30 The agricultural output in the economy grew by 3.5% in the third quarter (Q3) of FY20, against 3.1% in Q2 of FY20. Full Article Economy
crop IIT-Madras research reveals rising threat of air-borne fungus attack on crops By www.financialexpress.com Published On :: 2020-04-15T00:45:00+05:30 While diseases and ecosystem damages, caused by aerosol-borne bacteria, and viruses are widely studied, the effect of aerosolised fungal spread on human and ecosystem health is less understood. Full Article India
crop Vesper closes $23M Series B for its sensor-based microphone: Amazon Alexa Fund among investors By feedproxy.google.com Published On :: 2018-05-21T05:00:00-07:00 Vesper, the maker of piezoelectric sensors used in microphone production and winner of CES Innovation Award 2018 raised a $23M Series B round. American Family Ventures led the investment with participation from Accomplice, Amazon Alexa Fund, Baidu, Bose Ventures, Hyperplane, Sands Capital, Shure, Synaptics, ZZ Capital and some undisclosed investors. Vesper VM1000 Vesper’s innovative sensors can be used in consumer electronics like TV remote controls, smart speakers, smartphones, intelligent sensor nodes, and hearables. The company will use the funding proceeds to scale-up its functions like mass production of its microphones and support expanded research and development, hiring, and establishing international sales offices. The main product of Vesper is VM1000, a low noise, high range,single-ended analog output piezoelectric MEMS microphone. It consists of a piezoelectric sensor and circuitry to buffer and amplify the output. Vesper VM1010 The hot-selling product of Vesper is VM1010 with ZeroPower Listening which is the first MEMS microphone that enables voice activation to battery-powered consumer devices. The unique selling point of Vesper’s products is they are built to operate in rugged environments that have dust and moisture. "Vesper's ZeroPower Listening capabilities coupled with its ability to withstand water, dust, oil, and particulate contaminants enables users that have never before been possible," said Katelyn Johnson, principal of American Family Ventures. "We are excited about Vesper's quest to transform our connected world, including IoT devices." Other recent funding news include $24 raised by sensor-based baby sock maker Owlet, IFTTT banks $24M from Salesforce to scale its IoT Enterprise offering, and Intel sells its Wind River Software to TPG. Full Article
crop Plastic and microplastic litter: A serious problem in the Arctic Ocean By feedproxy.google.com Published On :: Fri, 30 Aug 2019 21:02:07 +0000 By Sherry P. Broder HONOLULU (August 28, 2019)—Since the 1950s when plastics were first produced, more than 150 million tons of plastic debris have accumulated in the world’s oceans. Marine plastic litter includes large items, such as nets, floats, and other fishing debris, plus tiny microplastic particles that are pervasive and practically invisible to the naked eye—but equally harmful. The International Union for Conservation of Nature (IUCN) estimates that more than 35 percent of all the primary plastics that end up in the oceans are microplastics and that most of these tiny particles originate from textiles. Ingestion of plastic particles by fish, bivalves, and other seafood is particularly concerning for humans, in part because little is known about the pesticides that are... This is a summary only. Click the title for the full article, or visit www.EastWestCenter.org/Research-Wire for more. Full Article
crop ECHAs proposal to restrict intentionally added microplastics By www.eversheds.com Published On :: 2019-11-13 The public consultation launched by the European Chemicals Agency (“ECHA”) on the topic of microplastics closed on 20 September 2019 with the submission of 477 comments. The consultation followed the publication by ECHA earlier this year... Full Article
crop AKG Lyra Ultra-HD, Multimode USB Microphone Make 2020 NAMM and CES Show Debut By news.harman.com Published On :: Tue, 07 Jan 2020 13:00:00 GMT NORTHRIDGE, Calif.—HARMAN Professional Solutions, the global leader in audio, video, lighting and control systems, today announced the AKG Lyra ultra-HD, multi-mode USB microphone will be making its 2020 tradeshow season debut at the 2020 NAMM show in... Full Article
crop Monsanto pesticide blamed for major U.S. crop damage By feeds.reuters.com Published On :: Wed, 09 Aug 2017 05:39:47 -0400 A Reuters examination has found that widespread crop damage covering millions of acres of Midwestern farmland has its roots in weak regulatory oversight and corporate secrecy. Full Article
crop Newly discovered species found deep in the ocean contains microplastic By www.newscientist.com Published On :: Wed, 25 Mar 2020 18:00:00 +0000 A shrimp-like creature found 6 kilometres down in the Pacific Ocean’s deepest trench has been named Eurythenes plasticus after the microplastics found in its gut Full Article
crop We constantly eat microplastics. What does that mean for our health? By www.newscientist.com Published On :: Wed, 04 Dec 2019 18:00:00 +0000 Tiny particles of plastic are in our food, water and even the air we breathe. We investigate the impact they have inside our bodies Full Article
crop Robot with pincers can detect and remove weeds without harming crops By www.newscientist.com Published On :: Wed, 29 Apr 2020 17:07:03 +0000 A robot that uses artificial intelligence to find and remove weeds could eventually be used as an alternative to chemical insecticides Full Article
crop Ocean currents are sweeping microplastics into the deep sea By www.newscientist.com Published On :: Thu, 30 Apr 2020 19:00:19 +0000 Slow-moving underwater currents are leading to build ups of microplastics in biologically rich areas on the sea floor Full Article
crop The ins and outs of lipid rafts: functions in intracellular cholesterol homeostasis, microparticles, and cell membranes [Thematic Reviews] By www.jlr.org Published On :: 2020-05-01T00:05:27-07:00 Cellular membranes are not homogenous mixtures of proteins; rather, they are segregated into microdomains on the basis of preferential association between specific lipids and proteins. These microdomains, called lipid rafts, are well known for their role in receptor signaling on the plasma membrane (PM) and are essential to such cellular functions as signal transduction and spatial organization of the PM. A number of disease states, including atherosclerosis and other cardiovascular disorders, may be caused by dysfunctional maintenance of lipid rafts. Lipid rafts do not occur only in the PM but also have been found in intracellular membranes and extracellular vesicles (EVs). Here, we focus on discussing newly discovered functions of lipid rafts and microdomains in intracellular membranes, including lipid and protein trafficking from the ER, Golgi bodies, and endosomes to the PM, and we examine lipid raft involvement in the production and composition of EVs. Because lipid rafts are small and transient, visualization remains challenging. Future work with advanced techniques will continue to expand our knowledge about the roles of lipid rafts in cellular functioning. Full Article
crop Modulation of Monocyte-Driven Myositis in Alphavirus Infection Reveals a Role for CX3CR1+ Macrophages in Tissue Repair By mbio.asm.org Published On :: 2020-03-03T01:30:27-08:00 ABSTRACT Arthritogenic alphaviruses such as Ross River and Chikungunya viruses cause debilitating muscle and joint pain and pose significant challenges in the light of recent outbreaks. How host immune responses are orchestrated after alphaviral infections and lead to musculoskeletal inflammation remains poorly understood. Here, we show that myositis induced by Ross River virus (RRV) infection is driven by CD11bhi Ly6Chi inflammatory monocytes and followed by the establishment of a CD11bhi Ly6Clo CX3CR1+ macrophage population in the muscle upon recovery. Selective modulation of CD11bhi Ly6Chi monocyte migration to infected muscle using immune-modifying microparticles (IMP) reduced disease score, tissue damage, and inflammation and promoted the accumulation of CX3CR1+ macrophages, enhancing recovery and resolution. Here, we detail the role of immune pathology, describing a poorly characterized muscle macrophage subset as part of the dynamics of alphavirus-induced myositis and tissue recovery and identify IMP as an effective immunomodulatory approach. Given the lack of specific treatments available for alphavirus-induced pathologies, this study highlights a therapeutic potential for simple immune modulation by IMP in infected individuals in the event of large alphavirus outbreaks. IMPORTANCE Arthritogenic alphaviruses cause debilitating inflammatory disease, and current therapies are restricted to palliative approaches. Here, we show that following monocyte-driven muscle inflammation, tissue recovery is associated with the accumulation of CX3CR1+ macrophages in the muscle. Modulating inflammatory monocyte infiltration using immune-modifying microparticles (IMP) reduced tissue damage and inflammation and enhanced the formation of tissue repair-associated CX3CR1+ macrophages in the muscle. This shows that modulating key effectors of viral inflammation using microparticles can alter the outcome of disease by facilitating the accumulation of macrophage subsets associated with tissue repair. Full Article
crop A MicroRNA Network Controls Legionella pneumophila Replication in Human Macrophages via LGALS8 and MX1 By mbio.asm.org Published On :: 2020-03-24T01:31:01-07:00 ABSTRACT Legionella pneumophila is an important cause of pneumonia. It invades alveolar macrophages and manipulates the immune response by interfering with signaling pathways and gene transcription to support its own replication. MicroRNAs (miRNAs) are critical posttranscriptional regulators of gene expression and are involved in defense against bacterial infections. Several pathogens have been shown to exploit the host miRNA machinery to their advantage. We therefore hypothesize that macrophage miRNAs exert positive or negative control over Legionella intracellular replication. We found significant regulation of 85 miRNAs in human macrophages upon L. pneumophila infection. Chromatin immunoprecipitation and sequencing revealed concordant changes of histone acetylation at the putative promoters. Interestingly, a trio of miRNAs (miR-125b, miR-221, and miR-579) was found to significantly affect intracellular L. pneumophila replication in a cooperative manner. Using proteome-analysis, we pinpointed this effect to a concerted downregulation of galectin-8 (LGALS8), DExD/H-box helicase 58 (DDX58), tumor protein P53 (TP53), and then MX dynamin-like GTPase 1 (MX1) by the three miRNAs. In summary, our results demonstrate a new miRNA-controlled immune network restricting Legionella replication in human macrophages. IMPORTANCE Cases of Legionella pneumophila pneumonia occur worldwide, with potentially fatal outcome. When causing human disease, Legionella injects a plethora of virulence factors to reprogram macrophages to circumvent immune defense and create a replication niche. By analyzing Legionella-induced changes in miRNA expression and genomewide chromatin modifications in primary human macrophages, we identified a cell-autonomous immune network restricting Legionella growth. This network comprises three miRNAs governing expression of the cytosolic RNA receptor DDX58/RIG-I, the tumor suppressor TP53, the antibacterial effector LGALS8, and MX1, which has been described as an antiviral factor. Our findings for the first time link TP53, LGALS8, DDX58, and MX1 in one miRNA-regulated network and integrate them into a functional node in the defense against L. pneumophila. Full Article
crop Metabolism of Gluconeogenic Substrates by an Intracellular Fungal Pathogen Circumvents Nutritional Limitations within Macrophages By mbio.asm.org Published On :: 2020-04-07T01:31:16-07:00 ABSTRACT Microbial pathogens exploit host nutrients to proliferate and cause disease. Intracellular pathogens, particularly those exclusively living in the phagosome such as Histoplasma capsulatum, must adapt and acquire nutrients within the nutrient-limited phagosomal environment. In this study, we investigated which host nutrients could be utilized by Histoplasma as carbon sources to proliferate within macrophages. Histoplasma yeasts can grow on hexoses and amino acids but not fatty acids as the carbon source in vitro. Transcriptional analysis and metabolism profiling showed that Histoplasma yeasts downregulate glycolysis and fatty acid utilization but upregulate gluconeogenesis within macrophages. Depletion of glycolysis or fatty acid utilization pathways does not prevent Histoplasma growth within macrophages or impair virulence in vivo. However, loss of function in Pck1, the enzyme catalyzing the first committed step of gluconeogenesis, impairs Histoplasma growth within macrophages and severely attenuates virulence in vivo, indicating that Histoplasma yeasts rely on catabolism of gluconeogenic substrates (e.g., amino acids) to proliferate within macrophages. IMPORTANCE Histoplasma is a primary human fungal pathogen that survives and proliferates within host immune cells, particularly within the macrophage phagosome compartment. The phagosome compartment is a nutrient-limited environment, requiring Histoplasma yeasts to be able to assimilate available carbon sources within the phagosome to meet their nutritional needs. In this study, we showed that Histoplasma yeasts do not utilize fatty acids or hexoses for growth within macrophages. Instead, Histoplasma yeasts consume gluconeogenic substrates to proliferate in macrophages. These findings reveal the phagosome composition from a nutrient standpoint and highlight essential metabolic pathways that are required for a phagosomal pathogen to proliferate in this intracellular environment. Full Article
crop Simian Immunodeficiency Virus-Infected Memory CD4+ T Cells Infiltrate to the Site of Infected Macrophages in the Neuroparenchyma of a Chronic Macaque Model of Neurological Complications of AIDS By mbio.asm.org Published On :: 2020-04-21T01:31:26-07:00 ABSTRACT Simian immunodeficiency virus (SIV)-infected nonhuman primates can serve as a relevant model for AIDS neuropathogenesis. Current SIV-induced encephalitis (SIVE)/neurological complications of AIDS (neuroAIDS) models are generally associated with rapid progression to neuroAIDS, which does not reflect the tempo of neuroAIDS progression in humans. Recently, we isolated a neuropathogenic clone, SIVsm804E-CL757 (CL757), obtained from an SIV-infected rhesus macaque (RM). CL757 causes a more protracted progression to disease, inducing SIVE in 50% of inoculated animals, with high cerebral spinal fluid viral loads, multinucleated giant cells (MNGCs), and perivascular lymphocytic cuffing in the central nervous system (CNS). This latter finding is reminiscent of human immunodeficiency virus (HIV) encephalitis in humans but not generally observed in rapid progressor animals with neuroAIDS. Here, we studied which subsets of cells within the CNS were targeted by CL757 in animals with neurological symptoms of SIVE. Immunohistochemistry of brain sections demonstrated infiltration of CD4+ T cells (CD4) and macrophages (Ms) to the site of MNGCs. Moreover, an increase in mononuclear cells isolated from the brain tissues of RMs with SIVE correlated with increased cerebrospinal fluid (CSF) viral load. Subset analysis showed a specific increase in brain CD4+ memory T cells (Br-mCD4), brain-Ms (Br-Ms), and brain B cells (Br-B cells). Both Br-mCD4s and Br-Ms harbored replication-competent viral DNA, as demonstrated by virus isolation by coculture. However, only in animals exhibiting SIVE/neuroAIDS was virus isolated from Br-Ms. These findings support the use of CL757 to study the pathogenesis of AIDS viruses in the central nervous system and indicate a previously unanticipated role of CD4s cells as a potential reservoir in the brain. IMPORTANCE While the use of combination antiretroviral therapy effectively suppresses systemic viral replication in the body, neurocognitive disorders as a result of HIV infection of the central nervous system (CNS) remain a clinical problem. Therefore, the use of nonhuman primate models is necessary to study mechanisms of neuropathogenesis. The neurotropic, molecular clone SIVsm804E-CL757 (CL757) results in neuroAIDS in 50% of infected rhesus macaques approximately 1 year postinfection. Using CL757-infected macaques, we investigate disease progression by examining subsets of cells within the CNS that were targeted by CL757 and could potentially serve as viral reservoirs. By isolating mononuclear cells from the brains of SIV-infected rhesus macaques with and without encephalitis, we show that immune cells invade the neuroparenchyma and increase in number in the CNS in animals with SIV-induced encephalitis (SIVE). Of these cells, both brain macrophages and brain memory CD4+ T cells harbor replication-competent SIV DNA; however, only brain CD4+ T cells harbored SIV DNA in animals without SIVE. These findings support use of CL757 as an important model to investigate disease progression in the CNS and as a model to study virus reservoirs in the CNS. Full Article
crop Ehrlichia chaffeensis Uses an Invasin To Suppress Reactive Oxygen Species Generation by Macrophages via CD147-Dependent Inhibition of Vav1 To Block Rac1 Activation By mbio.asm.org Published On :: 2020-04-21T01:31:26-07:00 ABSTRACT The obligatory intracellular pathogen Ehrlichia chaffeensis lacks most factors that could respond to oxidative stress (a host cell defense mechanism). We previously found that the C terminus of Ehrlichia surface invasin, entry-triggering protein of Ehrlichia (EtpE; EtpE-C) directly binds mammalian DNase X, a glycosylphosphatidylinositol-anchored cell surface receptor and that binding is required to induce bacterial entry and simultaneously to block the generation of reactive oxygen species (ROS) by host monocytes and macrophages. However, how the EtpE-C–DNase X complex mediates the ROS blockade was unknown. A mammalian transmembrane glycoprotein CD147 (basigin) binds to the EtpE-DNase X complex and is required for Ehrlichia entry and infection of host cells. Here, we found that bone marrow-derived macrophages (BMDM) from myeloid cell lineage-selective CD147-null mice had significantly reduced Ehrlichia-induced or EtpE-C-induced blockade of ROS generation in response to phorbol myristate acetate. In BMDM from CD147-null mice, nucleofection with CD147 partially restored the Ehrlichia-mediated inhibition of ROS generation. Indeed, CD147-null mice as well as their BMDM were resistant to Ehrlichia infection. Moreover, in human monocytes, anti-CD147 partially abrogated EtpE-C-induced blockade of ROS generation. Both Ehrlichia and EtpE-C could block activation of the small GTPase Rac1 (which in turn activates phagocyte NADPH oxidase) and suppress activation of Vav1, a hematopoietic-specific Rho/Rac guanine nucleotide exchange factor by phorbol myristate acetate. Vav1 suppression by Ehrlichia was CD147 dependent. E. chaffeensis is the first example of pathogens that block Rac1 activation to colonize macrophages. Furthermore, Ehrlichia uses EtpE to hijack the unique host DNase X-CD147-Vav1 signaling to block Rac1 activation. IMPORTANCE Ehrlichia chaffeensis is an obligatory intracellular bacterium with the capability of causing an emerging infectious disease called human monocytic ehrlichiosis. E. chaffeensis preferentially infects monocytes and macrophages, professional phagocytes, equipped with an arsenal of antimicrobial mechanisms, including rapid reactive oxygen species (ROS) generation upon encountering bacteria. As Ehrlichia isolated from host cells are readily killed upon exposure to ROS, Ehrlichia must have evolved a unique mechanism to safely enter phagocytes. We discovered that binding of the Ehrlichia surface invasin to the host cell surface receptor not only triggers Ehrlichia entry but also blocks ROS generation by the host cells by mobilizing a novel intracellular signaling pathway. Knowledge of the mechanisms by which ROS production is inhibited may lead to the development of therapeutics for ehrlichiosis as well as other ROS-related pathologies. Full Article
crop Improving Crop Water-Use Efficiency Requires Optimizing the Circadian Clock By www.plantphysiol.org Published On :: 2020-05-08T08:30:48-07:00 Full Article