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Evidence-Based Clinical Use of Nanoscale Extracellular Vesicles in Nanomedicine

机译:纳米细胞外囊泡在循证医学中的循证临床应用

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Recent research has demonstrated that all body fluids assessed contain substantial amounts of vesicles that range in size from 30 to 1000 nm and that are surrounded by phospholipid membranes containing different membrane microdomains such as lipid rafts and caveolae. The most prominent representatives of these so-called extracellular vesicles (EVs) are nanosized exosomes (70-150 nm), which are derivatives of the endosomal system, and microvesicles (100-1000 nm), which are produced by outward budding of the plasma membrane. Nanosized EVs are released by almost all cell types and mediate targeted intercellular communication under physiological and pathophysiological conditions. Containing cell-type specific signatures, EVs have been proposed as biomarkers in a variety of diseases. Furthermore, according to their physical functions, EVs of selected cell types have been used as therapeutic agents in immune therapy, vaccination trials, regenerative medicine, and drug delivery. Undoubtedly, the rapidly emerging field of basic and applied EV research will significantly influence the biomedicinal landscape in the future. In this Perspective, we, a network of European scientists from clinical, academic, and industry settings collaborating through the H2020 European Cooperation in Science and Technology (COST) program European Network on Microvesicles and.Exosomes in Health and Disease (ME-HAD), demonstrate the high potential of nanosized EVs for both diagnostic and therapeutic (i.e., theranostic) areas of nanomedicine.
机译:最近的研究表明,所评估的所有体液均包含大量的囊泡,囊泡大小在30至1000 nm之间,并被包含不同膜微区(例如脂筏和小窝)的磷脂膜包围。这些所谓的细胞外囊泡(EVs)最突出的代表是内体系统衍生物的纳米级外泌体(70-150 nm),以及通过血浆的向外出芽产生的微囊泡(100-1000 nm)。膜。纳米电动汽车几乎在所有细胞类型中都能释放,并在生理和病理生理条件下介导靶向的细胞间通讯。电动汽车包含细胞类型的特定特征,已被提议作为多种疾病的生物标志物。此外,根据其生理功能,选定细胞类型的电动汽车已被用作免疫治疗,疫苗接种试验,再生医学和药物输送中的治疗剂。毫无疑问,快速发展的基础和应用电动汽车研究领域将在未来极大地影响生物医学领域。在这个观点中,我们是由来自临床,学术和行业背景的欧洲科学家组成的网络,通过H2020欧洲科学技术合作计划(COST)欧洲微囊泡和健康和疾病外来体(ME-HAD)网络进行协作,证明了纳米电动汽车在纳米医学的诊断和治疗(治疗学)领域具有巨大潜力。

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