Department of Pharmaceutical Technology, Faculty of Pharmacy of the University of Coimbra, University of Coimbra, 3000-548, Coimbra, Portugal.
REQUIMTE/LAQV, Group of Pharmaceutical Technology, Faculty of Pharmacy of the University of Coimbra, University of Coimbra, 3000-548, Coimbra, Portugal.
Mil Med Res. 2023 Apr 27;10(1):19. doi: 10.1186/s40779-023-00453-z.
A bio-inspired strategy has recently been developed for camouflaging nanocarriers with biomembranes, such as natural cell membranes or subcellular structure-derived membranes. This strategy endows cloaked nanomaterials with improved interfacial properties, superior cell targeting, immune evasion potential, and prolonged duration of systemic circulation. Here, we summarize recent advances in the production and application of exosomal membrane-coated nanomaterials. The structure, properties, and manner in which exosomes communicate with cells are first reviewed. This is followed by a discussion of the types of exosomes and their fabrication methods. We then discuss the applications of biomimetic exosomes and membrane-cloaked nanocarriers in tissue engineering, regenerative medicine, imaging, and the treatment of neurodegenerative diseases. Finally, we appraise the current challenges associated with the clinical translation of biomimetic exosomal membrane-surface-engineered nanovehicles and evaluate the future of this technology.
一种仿生策略最近被开发出来,用于用生物膜(如天然细胞膜或亚细胞结构衍生的膜)来伪装纳米载体。该策略赋予了伪装纳米材料更好的界面性能、优异的细胞靶向性、免疫逃逸潜力和更长的系统循环时间。在这里,我们总结了近年来外泌体膜包覆纳米材料的生产和应用的进展。首先回顾了外泌体的结构、性质以及与细胞相互作用的方式。然后讨论了外泌体的类型及其制备方法。接着讨论了仿生外泌体和膜包裹的纳米载体在组织工程、再生医学、成像和神经退行性疾病治疗中的应用。最后,我们评估了与仿生外泌体膜表面工程纳米载体的临床转化相关的当前挑战,并评估了这项技术的未来前景。