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基于外泌体的递药纳米平台:用于乳腺癌的下一代治疗诊断一体化平台。

Exosome-based delivery nanoplatforms: next-generation theranostic platforms for breast cancer.

机构信息

Zhejiang Key Laboratory of Pathophysiology, School of Medicine, Ningbo University, Ningbo, Zhejiang 315211, China.

Ningbo Institute of Medical Sciences, Ningbo, Zhejiang 315020, China.

出版信息

Biomater Sci. 2022 Mar 29;10(7):1607-1625. doi: 10.1039/d2bm00062h.

Abstract

Breast cancer is the most frequent type of malignancy, and the leading cause of cancer-related death in women across the globe. Exosomes are naturally derived 50-150 nm nanovesicles with a variety of bioactive molecules to regulate the complex intracellular pathways involved in all stages of breast cancer development. Exosomes are also considered as a potential new generation of natural nanocarriers due to their intriguing endogenous functionalities. Recently, the development of exosome-based delivery nanoplatforms that combine the inherent unique advantages of exosomes with advanced nanotechnology has emerged as a promising area. In the present review, we first declare the fundamental principles of the relationship between exosomes and breast cancer, ranging from the initiation and progression of breast cancer, to drug resistance. More efforts are made to present a comprehensive overview of the recent advances of exosome nanotechnology for breast cancer therapy, including natural exosomes from different cell types, engineered exosomes with cargo loading and membrane modification, and artificial bionic exosomes with more stable and scalable properties. Based on the recent advanced nanotechnologies, exosome-based delivery nanoplatforms have been considered as the next-generation theranostic platforms, which sheds the light on the achievement of the clinical translation of exosomes for breast cancer therapy.

摘要

乳腺癌是最常见的恶性肿瘤类型,也是全球女性癌症相关死亡的主要原因。外泌体是一种天然衍生的 50-150nm 纳米囊泡,具有多种生物活性分子,可调节乳腺癌发生发展的各个阶段所涉及的复杂细胞内途径。由于其有趣的内源性功能,外泌体也被认为是新一代天然纳米载体。最近,基于外泌体的递药纳米平台的发展,将外泌体的固有独特优势与先进的纳米技术相结合,成为一个有前途的领域。在本综述中,我们首先阐述了外泌体与乳腺癌之间关系的基本原理,范围从乳腺癌的起始和进展,到耐药性。我们更努力地全面概述了外泌体纳米技术在乳腺癌治疗中的最新进展,包括来自不同细胞类型的天然外泌体、具有货物装载和膜修饰的工程化外泌体以及具有更稳定和可扩展特性的人工仿生外泌体。基于最近的先进纳米技术,基于外泌体的递药纳米平台被认为是下一代治疗诊断平台,为外泌体在乳腺癌治疗中的临床转化指明了方向。

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