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its a beautiful autumn day to run for your life v




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Mary Elizabeth Williams: The clumsy, beautiful Rally to Restore Sanity




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Beautiful Photos from America’s Six Least-Visited National Parks

These parks are less popular, but no less spectacular




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The same beautiful threads

“Listening to their testimonies, I’ve begun to envision their stories as a collection of clues, a series of scenes revealing the fingerprints of something—or Someone—beyond our deepest imagination,” says Chris. “The people I talked with hail from a variety of backgrounds—atheist German to Cambodian Buddhist—but the tapestries of their lives reveal the same beautiful threads, pointing unmistakably to a Designer.“




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Born to be beautiful

A group of fourteen OM volunteers recently started organising meetings for ten- to thirteen-year-olds in Mexico: the ‘Butterfly Club’. It´s a weekly gathering of thirty young girls in Hermosillo, Mexico. They come from a vulnerable environment with broken families that lack many basic resources.




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Making broken pieces beautiful

By offering a creative class for women, an OM worker finds ways to transform broken tiles into art and make relationships where she can share God’s truth.




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Beautiful floral lingerie for Valentine's Day

Compiled by Antigoni Markitani




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Have you ever seen the beautiful Georgian script?

OM EAST responds to the need for Christian books in the Georgian language.




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Species Distribution and Comparison between EUCAST and Gradient Concentration Strips Methods for Antifungal Susceptibility Testing of 112 Aspergillus Section Nigri Isolates [Susceptibility]

Aspergillus niger, the third species responsible for invasive aspergillosis has been considered as a homogeneous species until DNA-based identification uncovered many cryptic species. These species have been recently reclassified into the Aspergillus section Nigri. However little is yet known among the section Nigri about the species distribution and the antifungal susceptibility pattern of each cryptic species. A total of 112 clinical isolates collected from 5 teaching hospitals in France and phenotypically identified as A. niger were analyzed. Identification to the species level was carried out by nucleotide sequence analysis. The Minimum Inhibitory Concentrations (MICs) of itraconazole, voriconazole, posaconazole, isavuconazole and amphotericin B were determined by both the EUCAST and gradient concentration strips methods. Aspergillus tubingensis (n=51, 45.5%) and A. welwitschiae (n=50, 44.6%) were the most common species while A. niger accounted for only 6.3% (n=7). The MICs of azoles drugs were higher for A. tubingensis than for A. welwitschiae. The MIC of amphotericin B was 2 mg/L or less for all isolates. Importantly, MICs determined by EUCAST showed no correlation with those determined by gradient concentration strips methods, these latter being lower than the former (Spearman's rank correlation tests ranging - depending on the antifungal agent - from 0.01 to 0.25; p>0.4). In conclusion, A. niger should be considered as a minority species in the section Nigri. The differences in MICs between species for different azoles underline the importance of accurate identification. Significant divergences in the determination of MIC between EUCAST and gradient concentration strips methods require further investigation.




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Hazel Keech Shares Adorable Birthday Wish For "Beautiful Girl" Ira Khan

Ira and Hazel have worked together in the former's directorial debut Medea




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Supermoon 2020: After a beautiful ‘Pink Moon’ on Tuesday night, viewers share pics on Twitter

Explaining the difference between a normal Full Moon and a Supermoon, Brown told The Guardian that the Supermoon is just closer to the Earth than the usual Full Moon.




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World’s top 20 beautiful cities list has one Turkish metropolis

Turkey’s metropolis Istanbul has been ranked 17th in the list of the most beautiful cities in the world by online travel agency Flight Network. Click through for the top 20 most beautiful cities in photos… (Photos: Alamy)




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Beautiful close-ups of endangered big cats make real catwalk look tame

Beautiful close-ups of endangered big cats make real catwalk look tame




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Aerial photographs reveal odd and beautiful glimpses of our planet

Corners of unexpected planetary beauty are revealed in these stunning images on display in The Elevated Eye at Forest Lawn Museum, California




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Introducing the Citation Series: Beautifully Designed, Smart, Configurable Home Audio Speaker Systems from Harman Kardon

CES 2019, LAS VEGAS – JANUARY 7, 2019 – Today’s discerning audio consumer is seeking sophisticated design and innovative technology that seamlessly blends with their daily lives. When it comes to a multi-room speaker system that means: ease of use, form...




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The Harman Kardon Aura Studio 3: Visually Stunning Speaker, Equally Beautiful Sound

CES 2020 – LAS VEGAS – JANUARY 6, 2020 – Today, Harman Kardon announced the latest speaker to join its sophisticated icons collection, the Harman Kardon Aura Studio 3. This dome-shaped home audio combines style and function, while delivering 360-degree...




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The Multifunctional Long-Distance Movement Protein of Pea Enation Mosaic Virus 2 Protects Viral and Host Transcripts from Nonsense-Mediated Decay

ABSTRACT

The nonsense-mediated decay (NMD) pathway presents a challenge for RNA viruses with termination codons that precede extended 3' untranslated regions (UTRs). The umbravirus Pea enation mosaic virus 2 (PEMV2) is a nonsegmented, positive-sense RNA virus with an unusually long 3' UTR that is susceptible to NMD. To establish a systemic infection, the PEMV2 long-distance movement protein p26 was previously shown to both stabilize viral RNAs and bind them for transport through the plant’s vascular system. The current study demonstrated that p26 protects both viral and nonviral messenger RNAs from NMD. Although p26 localizes to both the cytoplasm and nucleolus, p26 exerts its anti-NMD effects exclusively in the cytoplasm independently of long-distance movement. Using a transcriptome-wide approach in the model plant Nicotiana benthamiana, p26 protected a subset of cellular NMD target transcripts, particularly those containing long, structured, GC-rich 3' UTRs. Furthermore, transcriptome sequencing (RNA-seq) revealed that the NMD pathway is highly dysfunctional during PEMV2 infection, with 1,820 (48%) of NMD targets increasing in abundance. Widespread changes in the host transcriptome are common during plant RNA virus infections, and these results suggest that, in at least some instances, virus-mediated NMD inhibition may be a major contributing factor.

IMPORTANCE Nonsense-mediated decay (NMD) represents an RNA regulatory pathway that degrades both natural and faulty messenger RNAs with long 3' untranslated regions. NMD targets diverse families of RNA viruses, requiring that viruses counteract the NMD pathway for successful amplification in host cells. A protein required for long-distance movement of Pea enation mosaic virus 2 (PEMV2) is shown to also protect both viral and host mRNAs from NMD. RNA-seq analyses of the Nicotiana benthamiana transcriptome revealed that PEMV2 infection significantly impairs the host NMD pathway. RNA viruses routinely induce large-scale changes in host gene expression, and, like PEMV2, may use NMD inhibition to alter the host transcriptome in an effort to increase virus amplification.




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Human Neutrophils Produce Antifungal Extracellular Vesicles against Aspergillus fumigatus

ABSTRACT

Polymorphonuclear granulocytes (PMNs) are indispensable for controlling life-threatening fungal infections. In addition to various effector mechanisms, PMNs also produce extracellular vesicles (EVs). Their contribution to antifungal defense has remained unexplored. We reveal that the clinically important human-pathogenic fungus Aspergillus fumigatus triggers PMNs to release a distinct set of antifungal EVs (afEVs). Proteome analyses indicated that afEVs are enriched in antimicrobial proteins. The cargo and the release kinetics of EVs are modulated by the fungal strain confronted. Tracking of afEVs indicated that they associated with fungal cells and even entered fungal hyphae, resulting in alterations in the morphology of the fungal cell wall and dose-dependent antifungal effects. To assess as a proof of concept whether the antimicrobial proteins found in afEVs might contribute to growth inhibition of hyphae when present in the fungal cytoplasm, two human proteins enriched in afEVs, cathepsin G and azurocidin, were heterologously expressed in fungal hyphae. This led to reduced fungal growth relative to that of a control strain producing the human retinol binding protein 7. In conclusion, extracellular vesicles produced by neutrophils in response to A. fumigatus infection are able to associate with the fungus, limit growth, and elicit cell damage by delivering antifungal cargo. This finding offers an intriguing, previously overlooked mechanism of antifungal defense against A. fumigatus.

IMPORTANCE Invasive fungal infections caused by the mold Aspergillus fumigatus are a growing concern in the clinic due to the increasing use of immunosuppressive therapies and increasing antifungal drug resistance. These infections result in high rates of mortality, as treatment and diagnostic options remain limited. In healthy individuals, neutrophilic granulocytes are critical for elimination of A. fumigatus from the host; however, the exact extracellular mechanism of neutrophil-mediated antifungal activity remains unresolved. Here, we present a mode of antifungal defense employed by human neutrophils against A. fumigatus not previously described. We found that extracellular vesicles produced by neutrophils in response to A. fumigatus infection are able to associate with the fungus, limit growth, and elicit cell damage by delivering antifungal cargo. In the end, antifungal extracellular vesicle biology provides a significant step forward in our understanding of A. fumigatus host pathogenesis and opens up novel diagnostic and therapeutic possibilities.




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Multifunctional Acidocin 4356 Combats Pseudomonas aeruginosa through Membrane Perturbation and Virulence Attenuation: Experimental Results Confirm Molecular Dynamics Simulation [Biotechnology]

A longstanding awareness in generating resistance to common antimicrobial therapies by Gram-negative bacteria has made them a major threat to global health. The application of antimicrobial peptides as a therapeutic agent would be a great opportunity to combat bacterial diseases. Here, we introduce a new antimicrobial peptide (~8.3 kDa) from probiotic strain Lactobacillus acidophilus ATCC 4356, designated acidocin 4356 (ACD). This multifunctional peptide exerts its anti-infective ability against Pseudomonas aeruginosa through an inhibitory action on virulence factors, bacterial killing, and biofilm degradation. Reliable performance over tough physiological conditions and low hemolytic activity confirmed a new hope for the therapeutic setting. Antibacterial kinetic studies using flow cytometry technique showed that the ACD activity is related to the change in permeability of the membrane. The results obtained from molecular dynamic (MD) simulation were perfectly suited to the experimental data of ACD behavior. The structure-function relationship of this natural compound, along with the results of transmission electron microscopy analysis and MD simulation, confirmed the ability of the ACD aimed at enhancing bacterial membrane perturbation. The peptide was effective in the treatment of P. aeruginosa infection in mouse model. The results support the therapeutic potential of ACD for the treatment of Pseudomonas infections.

IMPORTANCE Multidrug-resistant bacteria are a major threat to global health, and the Pseudomonas bacterium with the ability to form biofilms is considered one of the main causative agents of nosocomial infections. Traditional antibiotics have failed because of increased resistance. Thus, finding new biocompatible antibacterial drugs is essential. Antimicrobial peptides are produced by various organisms as a natural defense mechanism against pathogens, inspiring the possible design of the next generation of antibiotics. In this study, a new antimicrobial peptide was isolated from Lactobacillus acidophilus ATCC 4356, counteracting both biofilm and planktonic cells of Pseudomonas aeruginosa. A detailed investigation was then conducted concerning the functional mechanism of this peptide by using fluorescence techniques, electron microscopy, and in silico methods. The antibacterial and antibiofilm properties of this peptide may be important in the treatment of Pseudomonas infections.




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Two Functional Fatty Acyl Coenzyme A Ligases Affect Free Fatty Acid Metabolism To Block Biosynthesis of an Antifungal Antibiotic in Lysobacter enzymogenes [Environmental Microbiology]

In Lysobacter enzymogenes OH11, RpfB1 and RpfB2 were predicted to encode acyl coenzyme A (CoA) ligases. RpfB1 is located in the Rpf gene cluster. Interestingly, we found an RpfB1 homolog (RpfB2) outside this canonical gene cluster, and nothing is known about its functionality or mechanism. Here, we report that rpfB1 and rpfB2 can functionally replace EcFadD in the Escherichia coli fadD mutant JW1794. RpfB activates long-chain fatty acids (n-C16:0 and n-C18:0) for the corresponding fatty acyl-CoA ligase (FCL) activity in vitro, and Glu-361 plays critical roles in the catalytic mechanism of RpfB1 and RpfB2. Deletion of rpfB1 and rpfB2 resulted in significantly increased heat-stable antifungal factor (HSAF) production, and overexpression of rpfB1 or rpfB2 completely suppressed HSAF production. Deletion of rpfB1 and rpfB2 resulted in increased L. enzymogenes diffusible signaling factor 3 (LeDSF3) synthesis in L. enzymogenes. Overall, our results showed that changes in intracellular free fatty acid levels significantly altered HSAF production. Our report shows that intracellular free fatty acids are required for HSAF production and that RpfB affects HSAF production via FCL activity. The global transcriptional regulator Clp directly regulated the expression of rpfB1 and rpfB2. In conclusion, these findings reveal new roles of RpfB in antibiotic biosynthesis in L. enzymogenes.

IMPORTANCE Understanding the biosynthetic and regulatory mechanisms of heat-stable antifungal factor (HSAF) could improve the yield in Lysobacter enzymogenes. Here, we report that RpfB1 and RpfB2 encode acyl coenzyme A (CoA) ligases. Our research shows that RpfB1 and RpfB2 affect free fatty acid metabolism via fatty acyl-CoA ligase (FCL) activity to reduce the substrate for HSAF synthesis and, thereby, block HSAF production in L. enzymogenes. Furthermore, these findings reveal new roles for the fatty acyl-CoA ligases RpfB1 and RpfB2 in antibiotic biosynthesis in L. enzymogenes. Importantly, the novelty of this work is the finding that RpfB2 lies outside the Rpf gene cluster and plays a key role in HSAF production, which has not been reported in other diffusible signaling factor (DSF)/Rpf-producing bacteria.




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Intrathecal Antibacterial and Antifungal Therapies [Reviews]

Intrathecal administration of anti-infectives is indicated in central nervous system infections by multiresistant pathogens when drugs that can reach adequate cerebrospinal fluid (CSF) concentrations by systemic therapy are not available. Antibiotics that readily pass the blood-brain and blood-CSF barriers and/or that have low toxicity allowing an increase in the daily dosage should not be used for intrathecal therapy. Intrathecal therapy is accompanied by systemic treatment. Antibacterials indispensable for intrathecal therapy include aminoglycosides, colistin, daptomycin, tigecycline, and vancomycin. Limited experience suggests the utility of the antifungals amphotericin B and caspofungin. Intraventricular administration ensures distribution throughout the CSF compartment, whereas intralumbar dosing often fails to attain adequate antibiotic concentrations in the ventricles. The individual dose is determined by the estimated size of the CSF space and by the estimated clearance from CSF. For moderately lipophilic anti-infectives with a molecular weight above approximately 1,000 g/mol, as well as for hydrophilic drugs with a molecular weight above approximately 400 g/mol, one daily dose is normally adequate. The ventricular drain should be clamped for 15 to 120 min to facilitate the distribution of the anti-infective in the CSF space. Therapeutic drug monitoring of the trough levels is necessary only in cases of therapeutic failure.




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Antifungal Susceptibility Testing: Current Approaches [Reviews]

Although not as ubiquitous as antibacterial susceptibility testing, antifungal susceptibility testing (AFST) is a tool of increasing importance in clinical microbiology laboratories. The goal of AFST is to reliably produce MIC values that may be used to guide patient therapy, inform epidemiological studies, and track rates of antifungal drug resistance. There are three methods that have been standardized by standards development organizations: broth dilution, disk diffusion, and azole agar screening for Aspergillus. Other commonly used methods include gradient diffusion and the use of rapid automated instruments. Novel methodologies for susceptibility testing are in development. It is important for laboratories to consider not only the method of testing but also the interpretation (or lack thereof) of in vitro data.




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The Antifungal Drug Isavuconazole Is both Amebicidal and Cysticidal against Acanthamoeba castellanii [Experimental Therapeutics]

Current treatments for Acanthamoeba keratitis rely on a combination of chlorhexidine gluconate, propamidine isethionate, and polyhexamethylene biguanide. These disinfectants are nonspecific and inherently toxic, which limits their effectiveness. Furthermore, in 10% of cases, recurrent infection ensues due to the difficulty in killing both trophozoites and double-walled cysts. Therefore, development of efficient, safe, and target-specific drugs which are capable of preventing recurrent Acanthamoeba infection is a critical unmet need for averting blindness. Since both trophozoites and cysts contain specific sets of membrane sterols, we hypothesized that antifungal drugs targeting sterol 14-demethylase (CYP51), known as conazoles, would have deleterious effects on A. castellanii trophozoites and cysts. To test this hypothesis, we first performed a systematic screen of the FDA-approved conazoles against A. castellanii trophozoites using a bioluminescence-based viability assay adapted and optimized for Acanthamoeba. The most potent drugs were then evaluated against cysts. Isavuconazole and posaconazole demonstrated low nanomolar potency against trophozoites of three clinical strains of A. castellanii. Furthermore, isavuconazole killed trophozoites within 24 h and suppressed excystment of preformed Acanthamoeba cysts into trophozoites. The rapid action of isavuconazole was also evident from the morphological changes at nanomolar drug concentrations causing rounding of trophozoites within 24 h of exposure. Given that isavuconazole has an excellent safety profile, is well tolerated in humans, and blocks A. castellanii excystation, this opens an opportunity for the cost-effective repurposing of isavuconazole for the treatment of primary and recurring Acanthamoeba keratitis.




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Beautiful mini villa for sale. District 12, HCMC, 80m2, price 3.8 bil VND. Call Mr Nam 0914823244

Beautiful mini villa Ground floor: Kitchen, living room, motorcycle parking room, 1 toilet, 1 front yard First floor: 3 bedrooms, 1 toilet. Land area: 80m2 Total usable area: 130m2 Best price: 3.8 Billion VND ...




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Beautiful, clean, mordern room for rent near Tan Son Nhat airport, 3 minutes by motorcycle

The room is beautiful, clean and convenience. On top of that, it nears to the airport. We have free wifi, amenities, modern furniture, elevator, TV. We also have a kitchen shared with everyone. In the kitchen, we have modern equipment for cooking. We have laundry, clothes drier,....




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Jarvis: The call to prayer, beautiful and haunting

The sun set Thursday, and a deep, melodious voice began from a loudspeaker at Windsor Mosque. “God is great,” Imam Mohamed Al-Jammali sang in Arabic. It was the athan, the Islamic call to prayer. The same words have summoned faithful Muslims around the world daily for centuries. It was beautiful and haunting. It was over […]




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Devs review: Alex Garland's hugely ambitious sci-fi series is thoughtful and jarringly beautiful

While this drama set in a shadowy San Francisco tech start-up is wonderful to look at, its plot and character development are a little shaky




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From DIY tinting to putting down the wax strips: how to master beautiful brows at home

The over-arching advice is that less is always more




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Lee Phillip Bell, co-creator of The Young and the Restless and The Bold and the Beautiful, dies aged 91

The ‘queen of daytime television’ created the two soap operas with her husband William Bell

The co-creator of The Young and the Restless and The Bold and the Beautiful, Lee Phillip Bell, has died aged 91.

Bell, an accomplished broadcast journalist and talk show host, and her husband William created two of the world’s most prominent soap operas, which have run continuously for over 47 years, and aired more than nearly 20,000 combined episodes.

We are all devastated by the passing of Lee Phillip Bell. A television pioneer and powerhouse in her own right, she elevated daytime television in co-creating “The Young and the Restless” with her equally iconic husband, Bill Bell. We sadly mourn our true matriarch. pic.twitter.com/V5nUaz4N5E

Lee Phillip Bell, Rest In Peace....Queen of Daytime Television https://t.co/4wIueloEF0

We are deeply saddened by the news of the passing of a member of our CBS family and Daytime community, Emmy Award winning broadcast journalist, and co-creator of Y&R and B&B, Lee Phillip Bell. She was a pioneer in television and will be missed dearly. pic.twitter.com/6BYpUYQwaU

Continue reading...




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Brooklyn Couple Have The Most Beautiful At-Home Wedding



Thanks to Zoom, 50 of their friends were able to attend.




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She has done such beautiful scenes: Shweta Tiwari on daughter Palak




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Plaschke: Lakers won a beautifully messy NBA Finals over Celtics in 2010

Could a mismatched band of defending champions gain revenge for a 2008 Finals embarrassment against the Celtics and become eternal Lakers?




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Corrie viewers touched as Nina has a gift for Asha after calling her beautiful

Coronation Street showed an incredibly tender moment between Nina and Asha after Asha confided in Nina something very personal




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'Some beautiful souls out there': mates' volunteer start-up makes global connections

Within five days, the trio had created Crisis Heroes, a platform to connect strangers struggling in lockdown with those who could help them.




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'Some beautiful souls out there': mates' volunteer start-up makes global connections

Within five days, the trio had created Crisis Heroes, a platform to connect strangers struggling in lockdown with those who could help them.




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Christy O'Donnell's 'Remember Me Well' Is A "Beautiful Wall Of Sound"

It's another hint of his incoming EP...

Glasgow's Christy O'Donnell has always had a deep emotional connection to music.

Beginning to play guitar at a teen, it seemed to unlock something inside of him, allowing him to access his emotions in a new way.

“It was like being blind and discovering colour,” he says. “When I felt bad I didn’t know how to deal with it until I found music.”

Writing his own songs, locating his own sense of expression, Christy will release his new EP shortly.

New single 'Remember Me Well' lands on May 8th, and it's a grand, alluring "wall of sound".

Dominated by that driving, surging vocal, it's the sound of someone's talent, of their message, coming into focus.

"I wanted to buildup to this beautiful wall of sound," he comments, "like I’m in a summer’s garden, like I’m sitting on the grass with all these flowers growing up around me."

"The track features a solitary violin which swells and opens into a rich musical soundscape: this trajectory from introspection to full-blown expression is something that first struck me in the music of Bon Iver, so I tried to model in on that. Let me know how you like it!"

Tune in now.

Order Christy O'Donnell's new EP HERE.

Join us on the ad-free creative social network Vero, as we get under the skin of global cultural happenings. Follow Clash Magazine as we skip merrily between clubs, concerts, interviews and photo shoots. Get backstage sneak peeks, exclusive content and access to Clash Live events and a true view into our world as the fun and games unfold.

 




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'Some beautiful souls out there': mates' volunteer start-up makes global connections

Within five days, the trio had created Crisis Heroes, a platform to connect strangers struggling in lockdown with those who could help them.




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The hard-won liberation of Hayley Williams: 'It wasn't beautiful. It was painful'

After 16 years as the frontwoman for Paramore, and following a broken marriage and a lot of therapy, Hayley Williams is releasing her first solo album.




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Multifunctional opsins




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Beautiful Bike Wedding in Sao Paulo

It might not be a first, but you have to give this couple credit for marrying on a bike in a city where traffic is so heavy that even pedestrians beat cars.




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OLED lighting makes a beautiful chandelier

French lighting design company Blackbody makes the new lighting tech an object of desire.




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Small 420 sq. ft. apartment gets multifunctional redesign

Multifunctional zones and a sleeping loft enlarge this small apartment in Taipei.




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Beautiful Sweaty Snowflakes Dissolve Polar Ozone

Image credit: Purdue University photo/Shepson Lab digg_url = 'http://www.treehugger.com/files/2009/12/beautiful-sweaty-snowflakes-dissolve-polar-ozone.php';Snowflakes, we have seen, are beautiful and diverse but they are not inert byproducts of cold




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Multifunctional shed has rooftop terrace & hidden roll-out kitchen

This shed packs it all in -- workspace, guesthouse, storage, seating, rooftop terrace and even a concealed kitchen.




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Lego’s refusal of bricks to artist Ai Weiwei sparks beautiful action

Art meets accidental crowd-sourced recycling.




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Freeform multifunctional alcoves playfully animate this 365 sq. ft. apartment

Inspired by the human-based Modulor system of proportion, this small Madrid apartment is defined by a series of wooden alcoves that hold different daily functions.




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Multifunctional NOOK is modern single bed that adapts to your needs (Video)

Optional add-ons like desks, drawers, cabinets, trundle beds and even bike racks make this single bed a place to work, play, rest and relax.




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Germán Velázquez proves that tall Passivhaus can be beautiful

This Bilbao tower is like nothing the Passivhaus world has seen.




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Beautiful, historic town in Sicily is selling homes for $1

Sambuca, the "City of Splendor" is hoping to save its historic structures and revive a waning community.




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Petite Marin repurposes men's dress shirts into beautiful and durable children's clothes

This new California-based company is run by two entrepreneurial moms who understand the value of local production, quality fabrics, and reducing one's environmental impact.