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工程化外泌体疗法治疗神经退行性疾病。

Engineered exosome therapeutics for neurodegenerative diseases.

机构信息

Manipal Institute of Regenerative Medicine, Manipal Academy of Higher Education, Manipal, India.

Manipal Institute of Regenerative Medicine, Manipal Academy of Higher Education, Manipal, India.

出版信息

Life Sci. 2024 Nov 1;356:123019. doi: 10.1016/j.lfs.2024.123019. Epub 2024 Aug 28.

Abstract

An increase in life expectancy comes with a higher risk for age-related neurological and cognitive dysfunctions. Given the psycho-socioeconomic burden due to unhealthy aging in the coming decades, the United Nations has declared 2021-2030 as a decade of healthy aging. In this line, multipotent mesenchymal stromal cell-based therapeutics received special interest from the research community. Based on decades of research on cell therapy, a consensus has emerged that the therapeutic effects of cell therapy are due to the paracrine mechanisms rather than cell replacement. Exosomes, a constituent of the secretome, are nano-sized vesicles that have been a focus of intense research in recent years as a possible therapeutic agent or as a cargo to deliver drugs of interest into the central nervous system to induce neurogenesis, reduce neuroinflammation, confer neuroregeneration/neuroprotection, and improve cognitive and motor functions. In this review, we have discussed the neuroprotective properties of exosomes derived from adult mesenchymal stem cells, with a special focus on the role of exosomal miRNAs. We also reviewed various strategies to improve exosome production and their content for better therapeutic effects. Further, we discussed the utilization of ectomesenchymal stem cells like dental pulp stem cells and their exosomes in treating neurodegenerative diseases.

摘要

预期寿命的增加伴随着与年龄相关的神经和认知功能障碍的风险增加。鉴于未来几十年因老龄化而导致的心理-社会-经济负担,联合国宣布 2021-2030 年为健康老龄化十年。在这方面,基于多能间充质基质细胞的治疗方法受到了研究界的特别关注。基于细胞治疗数十年的研究,已经形成了一种共识,即细胞治疗的治疗效果是由于旁分泌机制而不是细胞替代。外泌体是分泌组的一种成分,是近年来研究的焦点,因为它们可能是一种治疗剂,也可能是一种携带物,将感兴趣的药物递送到中枢神经系统,以诱导神经发生、减少神经炎症、赋予神经再生/神经保护,并改善认知和运动功能。在这篇综述中,我们讨论了源自成人间充质干细胞的外泌体的神经保护特性,特别关注外泌体 miRNA 的作用。我们还回顾了各种提高外泌体产量及其内容以获得更好治疗效果的策略。此外,我们还讨论了利用牙髓干细胞等中胚层干细胞及其外泌体治疗神经退行性疾病的情况。

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