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Showing posts from September, 2024

Mineralo-organic particles inhibit influenza A virus infection by targeting viral hemagglutinin activity

  Abstract Aim:  Mineralo-organic particles, naturally present in human body fluids, participate in ectopic calcification and inflammatory diseases. These particles coexist with influenza A virus (IAV) in the same microenvironment during viral infection. Our objective was to investigate the functional consequences of the potential interactions between these particles and the virions. Materials & methods:  We used  in vitro  models, including electron microscopy, fluorescence microscopy, hemagglutination assay and viral infection assays to examine the interactions. Results:  Mineralo-organic particles bind to IAV virions through interactions involving particle-bound fetuin-A and mineral content, effectively engaging viral hemagglutinin. These interactions result in hindered viral infection. Conclusion:  These findings uncover the novel interactions between mineralo-organic particles and IAV, highlighting the impact of virus microenvironment complexi...

Metformin decelerates aging clock in male monkeys

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Highlights • Metformin prevents brain atrophy, elevating cognitive function in aged male primates • Metformin slows the pace of aging across diverse male primate tissues • Metformin counterparts neuronal aging, delivering geroprotection via Nrf2 in male primates  

Biological Functions of Extracellular Vesicles from Mammalian Cells

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Extracellular vesicles (EVs) are enclosed by a phospholipid bilayer and can be secreted by most types of cells. EVs deliver cargo from the secreting cell into the cytoplasm of recipient cells, influencing the function of the recipient cells. EVs are attracting increasing attention from a broad range of clinicians and scientists due to their ability to promote or inhibit various physiological pathways or pathological conditions. This special issue of  Biomedical Journal  contains articles describing the biogenesis and biodistribution of EVs and their role in the intercellular transfer of various molecules or viruses to target cells, in rejecting allogeneic transplants and maintaining immune tolerance of the allogeneic fetus, and in modulating innate and adaptive immunity. Characterization of the role of EVs in various pathological conditions and our ability to engineer modified EVs may lead to discovery of novel biomarkers and development of therapeutic strategies for treatment...