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源自牛奶的细胞外囊泡:用于药物递送和治疗的天然纳米载体。

Milk-derived extracellular vesicles: nature's nanocarriers for drug delivery and therapeutics.

作者信息

Kong Chen, Huang Long-Bin, Yang Mei-Feng, Yue Ning-Ning, Zhang Yuan, Tian Cheng-Mei, Wang Yuan-Hui, Wei Dao-Ru, Shi Rui-Yue, Liang Yu-Jie, Yao Jun, Wang Li-Sheng, Li De-Feng

机构信息

Department of Gastroenterology, Shenzhen People's Hospital, The Second Clinical Medical College, Jinan University, Shenzhen, Guangdong, China.

Department of General Medicine, Yantian District People's Hospital, Shenzhen, Guangdong, China.

出版信息

Front Pharmacol. 2025 Aug 6;16:1595891. doi: 10.3389/fphar.2025.1595891. eCollection 2025.

Abstract

Breast milk-derived extracellular vesicles (MEVs) are natural nanocarriers characterized by their stability, biocompatibility, and low immunogenicity. These small, lipid bilayer-enclosed nanoparticles carry diverse bioactive molecules, including proteins, nucleic acids, and lipids, enabling them to facilitate inter-organismal communication. This review highlights the therapeutic potential of MEVs as innovative drug delivery systems, with a focus on their unique composition, functional properties, and mechanisms of action-from biogenesis and secretion to cellular uptake. We critically examine current methods for isolating and purifying MEVs, addressing challenges related to scalability, purity, cost, and standardization in industrial production. Furthermore, we discuss strategies to enhance the bioavailability and stability of MEVs for pharmaceutical applications. In conclusion, MEVs represent a scalable and cost-effective platform for therapeutic delivery, with significant potential in both nutritional and medicinal contexts. Future research should focus on optimizing production processes and advancing clinical translation to fully harness their capabilities.

摘要

母乳来源的细胞外囊泡(MEVs)是天然纳米载体,具有稳定性、生物相容性和低免疫原性等特点。这些由脂质双层包裹的小纳米颗粒携带多种生物活性分子,包括蛋白质、核酸和脂质,使其能够促进生物体间的通讯。本综述重点介绍了MEVs作为创新药物递送系统的治疗潜力,着重阐述其独特的组成、功能特性以及从生物发生、分泌到细胞摄取的作用机制。我们批判性地审视了目前分离和纯化MEVs的方法,探讨了工业生产中与可扩展性、纯度、成本和标准化相关的挑战。此外,我们还讨论了提高MEVs在药物应用中的生物利用度和稳定性的策略。总之,MEVs代表了一个可扩展且具有成本效益的治疗递送平台,在营养和医学领域均具有巨大潜力。未来的研究应专注于优化生产工艺并推进临床转化,以充分发挥其能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be46/12365776/ae410cbef24e/FPHAR_fphar-2025-1595891_wc_abs.jpg

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