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植物源外泌体样纳米囊泡的工程策略:当前认知与未来展望

Engineering Strategies of Plant-Derived Exosome-Like Nanovesicles: Current Knowledge and Future Perspectives.

作者信息

Li Yuhan, Wang Yulong, Zhao Hongrui, Pan Qi, Chen Guihao

机构信息

Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People's Republic of China.

Intensive Care Medicine Department, Yuhuangding Hospital, Yantai, People's Republic of China.

出版信息

Int J Nanomedicine. 2024 Nov 30;19:12793-12815. doi: 10.2147/IJN.S496664. eCollection 2024.

Abstract

Plant-derived exosome-like nanovesicles (PELNs) from edible plants, isolated by ultracentrifugation, size exclusion chromatography or other methods, were proved to contain a variety of biologically active and therapeutically specific components. Recently, investigations in the field of PELN-based biomedicine have been conducted, which positioned those nanovesicles as promising tools for prevention and treatment of several diseases, with their natural origin potentially offering superior biocompatibility and bioavailability. However, the inadequate targeting and limited therapeutic effects constrain the utility and clinical translation of PELNs. Thus, strategies aiming at bridging the gap by engineering natural PELNs have been of great interest. Those approaches include membrane hybridization, physical and chemical surface functionalization and encapsulation of therapeutic payloads. Herein, we provide a comprehensive overview of the biogenesis and composition, isolation and purification methods and characterization of PELNs, as well as their therapeutic functions. Current knowledge on the construction strategies and biomedical application of engineered PELNs were reviewed. Additionally, future directions and perspectives in this field were discussed in order to further enrich and expand the prospects for the application of engineered PELNs.

摘要

通过超速离心、尺寸排阻色谱法或其他方法分离得到的可食用植物来源的外泌体样纳米囊泡(PELNs),被证明含有多种生物活性和治疗特异性成分。最近,在基于PELN的生物医学领域开展了研究,这些纳米囊泡被定位为预防和治疗多种疾病的有前景的工具,其天然来源可能具有卓越的生物相容性和生物利用度。然而,靶向性不足和治疗效果有限限制了PELNs的实用性和临床转化。因此,旨在通过对天然PELNs进行工程改造来弥合差距的策略引起了极大关注。这些方法包括膜杂交、物理和化学表面功能化以及治疗有效载荷的封装。在此,我们全面概述了PELNs的生物发生、组成、分离和纯化方法、表征及其治疗功能。综述了工程化PELNs构建策略和生物医学应用的当前知识。此外,还讨论了该领域的未来方向和前景,以进一步丰富和拓展工程化PELNs的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a80/11618857/1503f5502327/IJN-19-12793-g0001.jpg

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