Results 111 to 120 of about 178,854 (310)
Extracellular Vesicles of Streptococcus anginosus Mediate Gastritis via Epithelial Barrier Disruption and Macrophage‐driven Inflammation
Advanced Science, EarlyView.Streptococcus anginosus extracellular vesicles (SA‐EVs) accumulate in gastric tissue, disrupt epithelial tight junctions, and induce gastritis characterized by neutrophil infiltration and elevated cytokines (TNF‐α, IL‐6, IL‐17A). Proteomics identifies TMPC and FBP62 as key SA‐EVs virulence factors; their genetic deletion attenuates inflammation ...Ying Gong, Lina Duan, Jie Xiao, Yulu Deng, Hongxia Wang, Yajie Zhang, Xiumei Hu, Haifang Wang, Taixue An, Xin Li, Yurong Qiu, Lei Zheng, Haixia Li +12 morewiley +1 more sourceGenetically‐Programmed Hypervesiculation of Lactiplantibacillus Plantarum Increases Production of Bacterial Extracellular Vesicles with Therapeutic Efficacy in a Preclinical Inflammatory Bowel Disease Model
Advanced Science, EarlyView.The development of a novel engineered strain of Lactiplantibacillus plantarum (Lp) is reported that can produce bacterial extracellular vesicles (BEVs) at >60‐fold higher yields than the unmodified parental strain. These Lp BEVs retain therapeutic bioactivity as validated in a mouse model of dextran sodium sulfate‐induced colitis.Nicholas H Pirolli, Daniel Levy, Alyssa Schledwitz, Natalia Sampaio Moura, Mitali Sarkar, Talia J. Solomon, Emily H. Powsner, Raith Nowak, Zuzanna Mamczarz, Christopher J. Bridgeman, Sulayman Khan, Andrew Hui, Nidhi Anne, Laura Reus, William E. Bentley, Jean‐Pierre Raufman, Steven M. Jay +16 morewiley +1 more sourceRIPK3 dampens mitochondrial bioenergetics and lipid droplet dynamics in metabolic liver disease
Hepatology, EarlyView., 2022 RIPK3 dampens mitochondrial bioenergetics and lipid droplet dynamics in metabolic liver disease. Abstract Background and Aims
Receptor‐interacting protein kinase 3 (RIPK3) mediates NAFLD progression, but its metabolic function is unclear. Here, we aimed to investigate the role of RIPK3 in modulating mitochondria function, coupled with lipid droplet (LD)Marta B. Afonso, Tawhidul Islam, Julie Magusto, Ricardo Amorim, Véronique Lenoir, Rui F. Simões, José Teixeira, Liana C. Silva, Dominique Wendum, Isabelle Jéru, Corinne Vigouroux, Rui E. Castro, Paulo J. Oliveira, Carina Prip‐Buus, Vlad Ratziu, Jérémie Gautheron, Cecília M. P. Rodrigues +16 morewiley +1 more sourceHigh-level resistance to non-nucleos(t)ide reverse transcriptase inhibitor based first-line antiretroviral therapy in Ghana; A 2017 study. [PDF]
Front Microbiol, 2022 Parbie PK, Abana CZ, Kushitor D, Asigbee TW, Ntim NAA, Addo-Tetebo G, Ansong MRD, Ofori SB, Mizutani T, Runtuwene LR, Nishizawa M, Ishikawa K, Kiyono H, Ampofo WK, Matano T, Bonney EY, Kikuchi T. +16 moreeuropepmc +1 more sourceSulfoquinovosyldiacylglycerol, KM043, a New Potent Inhibitor of Eukaryotic DNA Polymerases and HIV-Reverse Transcriptase Type 1 from a Marine Red Alga, Gigartina tenella.
, 1998 Keisuke Ohta, Y Mizushima, Noriko Hirata, Masaharu Takemura, Fumio Sugawara, Akio Matsukage, Shonen Yoshida, Kengo Sakaguchi +7 moreopenalex +2 more sourcesHost‐Directed Antiviral Activity of SB2960 Through Selective Induction and Remodeling of Stress Granules
Advanced Science, EarlyView.Amid the ongoing threat of emerging viral pathogens, host‐directed antivirals offer a strategy to overcome viral mutation and drug resistance. SB2960, a small‐molecule inducer of stress granules (SGs), exhibits potent broad‐spectrum antiviral activity with minimal cytotoxicity.Wan Gi Byun, Sumin Son, JinAh Lee, Minha Lee, Meehyun Ko, Songrui Zhao, Ju Hee Kim, Kannan Vaithegi, Ji Hoon Kwon, Jung Ho Lee, Sangeun Jeon, Dawon Yi, Peng Zou, Seungtaek Kim, Seung Bum Park +14 morewiley +1 more sourceIdentification of novel neutralizing determinants for protection against HCV
Hepatology, EarlyView., 2022 Identification of novel neutralizing determinants for protection against hepatitis C virus. Abstract Background and Aims
HCV evasion of neutralizing antibodies (nAb) results in viral persistence and poses challenges to the development of an urgently needed vaccine.Garazi P. Alzua, Anne F. Pihl, Anna Offersgaard, Rodrigo Velázquez‐Moctezuma, Carlos R. Duarte Hernandez, Elias H. Augestad, Ulrik Fahnøe, Christian K. Mathiesen, Henrik Krarup, Mansun Law, Jannick Prentoe, Jens Bukh, Judith M. Gottwein +12 morewiley +1 more sourceEfficacy and safety of novel russian non-nucleoside reverse transcriptase inhibitor elsulfavirine in combination with 2 nucleoside/nucleotide reverse transcriptase inhibitors in first-line HIV treatment – 96-week study
, 2018 А В Кравченко, Elena Orlova‐Morozova, Tatiana Shimonova, О. А. Козырев, Ф. И. Нагимова, Nataliya Zaharova, Э. С. Иванова, У. А. Куимова, А. А. Попова, Oksana Chernova, O. S. Tonkih, Д. А. Гусев, A. A. Yakovlev, Vadim Pokrovsky, Вадим В. Бычко, Natalia Vostokova +15 moreopenalex +2 more sourcesWDR5‐H3K4me3 Epigenetic Axis Promotes TRMT6‐Dependent tRNA M1A Modification to Facilitate Triple‐Negative Breast Cancer Progression by Suppressing Ferroptosis
Advanced Science, EarlyView.Upregulated TRMT6 forms aberrant hypermethylation of a specific tRNA pool and serves as a predictor of poor prognosis in TNBC. This m1A modification in tRNAs enhances translation of FTH1 and FTL, reducing the pool of bioavailable Fe2⁺. Reduced Fe2+ availability impairs RSL3‐induced lipid peroxidation and tumor progression.Yuqing Lei, Xue Wang, Jiahe Liu, Zixu Niu, Jiaqi Hua, Qian Guo, Dan Du, Yuanchang Zhu, Fucheng He, Mingxia Zhou, Hongle Li, Jing He, Jun Li +12 morewiley +1 more sourceSurface‐Associated Proteins on Extracellular Vesicles Remodel the Tumor Microenvironment by Potentiating TGF‐β Signaling in a Contact‐Dependent Manner
Advanced Science, EarlyView.Extracellular vesicles (EVs) released from TGF‐β‐activated CAFs are enriched with ECM proteins such as TSG6 and THBS1, which facilitate their binding to recipient cell membranes. This EV–cell interaction promotes the clustering of CD44 and TGF‐β receptors on the target cell surface, thereby potentiating TGF‐β signaling activity. This study highlights a Chao Li, Agustin Enciso‐Martinez, Lizhe Zhu, Sarah A. Rotman, Peter A. van Veelen, Roman I. Koning, Hailiang Mei, Peter ten Dijke +7 morewiley +1 more source