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Simvastatin mediates inhibition of exosome synthesis, localization and secretion via multicomponent interventions

机译:辛伐他汀通过多组分干预介导外出组合,局部化和分泌的抑制作用

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Discovery of exosomes as modulator of cellular communication has added a new dimension to our understanding of biological processes. Exosomes influence the biological systems by mediating trans-communication across tissues and cells, which has important implication for health and disease. In absence of well-characterized modulators of exosome biogenesis, an alternative option is to target pathways generating important exosomal components. Cholesterol represents one such essential component required for exosomal biogenesis. We initiated this study to test the hypothesis that owing to its cholesterol lowering effect, simvastatin, a HMG CoA inhibitor, might be able to alter exosome formation and secretion. Simvastatin was tested for its effect on exosome secretion under various in-vitro and in-vivo settings and was found to reduce the secretion of exosome from various cell-types. It was also found to alter the levels of various proteins important for exosome production. Murine model of Acute Airway Inflammation was used for further validation of our findings. We believe that the knowledge acquired in this study holds potential for extension to other exosome dominated pathologies and model systems.
机译:作为蜂窝通信调制器的发现发现外来的发现是我们对生物过程的理解的新维度。外来物通过在组织和细胞中介导跨通信来影响生物系统,这对健康和疾病具有重要意义。在没有表征的外鼻肌生物发生的调节剂的情况下,替代选择是靶向产生重要外泌体组分的途径。胆固醇代表外泌体生物发生所需的一种如此必要的组分。我们启动了这项研究以测试假设,由于其胆固醇降低效果,辛伐他汀,HMG COA抑制剂,可能能够改变外出组形成和分泌。在各种体外和体内环境下测试了辛伐他汀的作用,并发现了从各种细胞类型中减少前哨的分泌。还发现它可以改变各种蛋白质的水平,对于外泌味生产很重要。急性气道炎症的鼠模型用于进一步验证我们的研究结果。我们认为本研究中获得的知识持有扩展到其他外科统治病理和模型系统的潜力。

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