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基于血浆的智能纳米外泌体平台作为临床病毒感染新出现的免疫发病机制

Plasma-Enabled Smart Nanoexosome Platform as Emerging Immunopathogenesis for Clinical Viral Infection.

作者信息

Mousavi Seyyed Mojtaba, Hashemi Seyyed Alireza, Gholami Ahmad, Kalashgrani Masoomeh Yari, Vijayakameswara Rao Neralla, Omidifar Navid, Hsiao Wesley Wei-Wen, Lai Chin Wei, Chiang Wei-Hung

机构信息

Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei City 106335, Taiwan.

Nanomaterials and Polymer Nanocomposites Laboratory, School of Engineering, University of British Columbia, Kelowna, BC V1V 1V7, Canada.

出版信息

Pharmaceutics. 2022 May 13;14(5):1054. doi: 10.3390/pharmaceutics14051054.

Abstract

Smart nanoexosomes are nanosized structures enclosed in lipid bilayers that are structurally similar to the viruses released by a variety of cells, including the cells lining the respiratory system. Of particular importance, the interaction between smart nanoexosomes and viruses can be used to develop antiviral drugs and vaccines. It is possible that nanoexosomes will be utilized and antibodies will be acquired more successfully for the transmission of an immune response if reconvalescent plasma (CP) is used instead of reconvalescent plasma exosomes (CPExo) in this concept. Convalescent plasma contains billions of smart nanoexosomes capable of transporting a variety of molecules, including proteins, lipids, RNA and DNA among other viral infections. Smart nanoexosomes are released from virus-infected cells and play an important role in mediating communication between infected and uninfected cells. Infections use the formation, production and release of smart nanoexosomes to enhance the infection, transmission and intercellular diffusion of viruses. Cell-free smart nanoexosomes produced by mesenchymal stem cells (MSCs) could also be used as cell-free therapies in certain cases. Smart nanoexosomes produced by mesenchymal stem cells can also promote mitochondrial function and heal lung injury. They can reduce cytokine storms and restore the suppression of host antiviral defenses weakened by viral infections. This study examines the benefits of smart nanoexosomes and their roles in viral transmission, infection, treatment, drug delivery and clinical applications. We also explore some potential future applications for smart nanoexosomes in the treatment of viral infections.

摘要

智能纳米外泌体是包裹在脂质双层中的纳米级结构,其结构与包括呼吸系统内衬细胞在内的多种细胞释放的病毒相似。特别重要的是,智能纳米外泌体与病毒之间的相互作用可用于开发抗病毒药物和疫苗。如果在这一概念中使用康复期血浆(CP)而非康复期血浆外泌体(CPExo),那么纳米外泌体有可能被更成功地利用并获得抗体以传递免疫反应。康复期血浆含有数十亿个能够运输多种分子的智能纳米外泌体,这些分子包括蛋白质、脂质、RNA和DNA等其他病毒感染相关物质。智能纳米外泌体从病毒感染的细胞中释放出来,在介导感染细胞与未感染细胞之间的通讯中发挥重要作用。感染利用智能纳米外泌体的形成、产生和释放来增强病毒的感染、传播和细胞间扩散。在某些情况下,间充质干细胞(MSC)产生的无细胞智能纳米外泌体也可用作无细胞疗法。间充质干细胞产生的智能纳米外泌体还可促进线粒体功能并治愈肺损伤。它们可以减少细胞因子风暴,并恢复因病毒感染而减弱的宿主抗病毒防御抑制。本研究探讨了智能纳米外泌体的益处及其在病毒传播、感染、治疗、药物递送和临床应用中的作用。我们还探索了智能纳米外泌体在治疗病毒感染方面未来的一些潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6eba/9145689/a9352f11270a/pharmaceutics-14-01054-g001.jpg

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