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用于肌肉骨骼疾病的外泌体疗法:工程学、靶向性及生物材料整合方面的进展

Exosome-Based Therapeutics for Musculoskeletal Disorders: Advances in Engineering, Targeting, and Biomaterial Integration.

作者信息

Lv Zehui, Xu Jiawei, Cai Xuejie, Wang Yingjie, Yang Xingdong, Wang Han, Zhu Yang, Feng Bin, Weng Xisheng

机构信息

Department of Orthopedic Surgery, State Key Laboratory of Complex Severe and Rare Diseases, Peking Union Medical College Hospital, Chinese Academy of Medical Science and Peking Union Medical College, Beijing 100730, China.

Fujian Provincial Institutes of Brain Disorders and Brain Sciences, The First Affiliated Hospital, Fujian Medical University, Fuzhou 35005, China.

出版信息

ACS Nano. 2025 Sep 30;19(38):33681-33716. doi: 10.1021/acsnano.5c05416. Epub 2025 Sep 17.

Abstract

Musculoskeletal disorders represent an escalating global challenge that adversely affects both the quality of life and healthcare systems. Despite the availability of conventional therapeutic approaches, these methods are constrained by inadequate targeting, limited tissue regeneration capabilities, and potential long-term safety concerns. In recent years, exosomes have emerged as promising agents for precise intervention and functional regeneration, owing to their properties of active targeting, cargo delivery capability, modifiability, and biocompatibility, particularly when used in conjunction with engineering and biomaterial delivery strategies. While the therapeutic potential of exosomes in the management of musculoskeletal diseases is increasingly acknowledged, the current literature lacks a comprehensive integration of three critical dimensions: exosome engineering strategies, advanced biomaterial delivery systems, and their prospective therapeutic applications across various diseases. Therefore, this study concentrates on engineering methodologies aimed at augmenting the therapeutic efficacy of exosomes, encompassing the pretreatment of blast cells, the modification of exosomes, and their incorporation with biomaterials. Furthermore, we systematically introduce delivery systems utilizing hydrogels, scaffolds, microneedles, and fiber membranes, which enhance exosome delivery by facilitating spatial positioning control and achieving sustained release effects. Building on this foundation, we conduct an in-depth examination of the mechanisms and applications of exosomes in the treatment of musculoskeletal disorders. Additionally, this review provides the analysis of biogenesis, isolation, extraction, and preservation strategies of exosomes while also identifying the key factors impeding their clinical application. Based on this synthesis, we propose that exosomes represent a transformative paradigm for targeted, minimally invasive, and tissue-specific interventions in musculoskeletal medicine.

摘要

肌肉骨骼疾病是一个日益严峻的全球性挑战,对生活质量和医疗保健系统都产生了不利影响。尽管有传统的治疗方法,但这些方法存在靶向性不足、组织再生能力有限以及潜在的长期安全问题等局限性。近年来,外泌体因其具有主动靶向、货物递送能力、可修饰性和生物相容性等特性,特别是与工程和生物材料递送策略结合使用时,已成为精确干预和功能再生的有前景的药物。虽然外泌体在肌肉骨骼疾病管理中的治疗潜力越来越得到认可,但目前的文献缺乏对三个关键维度的全面整合:外泌体工程策略、先进的生物材料递送系统及其在各种疾病中的潜在治疗应用。因此,本研究专注于旨在提高外泌体治疗效果的工程方法,包括胚细胞的预处理、外泌体的修饰以及它们与生物材料的结合。此外,我们系统地介绍了利用水凝胶、支架、微针和纤维膜的递送系统,这些系统通过促进空间定位控制和实现缓释效果来增强外泌体递送。在此基础上,我们深入研究了外泌体在治疗肌肉骨骼疾病中的机制和应用。此外,本综述对外泌体的生物发生、分离、提取和保存策略进行了分析,同时也确定了阻碍其临床应用的关键因素。基于这一综合分析,我们提出外泌体代表了肌肉骨骼医学中靶向、微创和组织特异性干预的变革性范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a5f/12490021/50ee0809eedd/nn5c05416_0001.jpg

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