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外泌体作为用于脑靶向递送治疗性核酸的纳米载体:进展与挑战

Exosomes as nanocarriers for brain-targeted delivery of therapeutic nucleic acids: advances and challenges.

作者信息

Sanadgol Nima, Abedi Mohsen, Hashemzaei Masoud, Kamran Zahra, Khalseh Roghayeh, Beyer Cordian, Voelz Clara

机构信息

Institute of Neuroanatomy, RWTH University Hospital Aachen, Aachen, Germany.

Department of Advanced Technologies, North Khorasan University of Medical Sciences, Bojnurd, Iran.

出版信息

J Nanobiotechnology. 2025 Jun 18;23(1):453. doi: 10.1186/s12951-025-03528-2.

Abstract

Recent advancements in gene expression modulation and RNA delivery systems have underscored the immense potential of nucleic acid-based therapies (NA-BTs) in biological research. However, the blood-brain barrier (BBB), a crucial regulatory structure that safeguards brain function, presents a significant obstacle to the delivery of drugs to glial cells and neurons. The BBB tightly regulates the movement of substances from the bloodstream into the brain, permitting only small molecules to pass through. This selective permeability poses a significant challenge for effective therapeutic delivery, especially in the case of NA-BTs. Extracellular vesicles, particularly exosomes, are recognized as valuable reservoirs of potential biomarkers and therapeutic targets. They are also gaining significant attention as innovative drug and nucleic acid delivery (NAD) carriers. Their unique ability to safeguard and transport genetic material, inherent biocompatibility, and capacity to traverse physiological barriers highlight their potential as drug carriers. This review provides a comprehensive overview of current strategies to enhance NAD to the brain, focusing on the emerging potential of exosomes as biocompatible and efficient nanocarriers. It synthesizes recent advances in the use of exosomes for NA-BTs in neurological disorders, comparing their advantages with those of conventional nanodelivery systems and cell-based therapies. Additionally, the review highlights innovative exosome engineering approaches to improve brain-targeted delivery, addresses key methodological limitations such as variability in cargo content, and proposes solutions to enhance standardization and safety. Collectively, these insights highlight the translational potential of exosomes and offer a novel perspective on bridging the gap between fundamental research and clinical application.

摘要

基因表达调控和RNA递送系统的最新进展凸显了基于核酸的疗法(NA-BTs)在生物学研究中的巨大潜力。然而,血脑屏障(BBB)作为保护脑功能的关键调节结构,对药物递送至神经胶质细胞和神经元构成了重大障碍。血脑屏障严格调控物质从血液进入大脑的运动,只允许小分子通过。这种选择性通透性对有效的治疗递送构成了重大挑战,尤其是在NA-BTs的情况下。细胞外囊泡,特别是外泌体,被认为是潜在生物标志物和治疗靶点的宝贵储存库。它们作为创新的药物和核酸递送(NAD)载体也越来越受到关注。它们保护和运输遗传物质的独特能力、固有的生物相容性以及穿越生理屏障的能力突出了它们作为药物载体的潜力。本综述全面概述了目前增强向大脑进行NAD递送的策略,重点关注外泌体作为生物相容性和高效纳米载体的新兴潜力。它综合了外泌体在神经疾病中用于NA-BTs的最新进展,将其优势与传统纳米递送系统和基于细胞的疗法进行了比较。此外,该综述强调了创新的外泌体工程方法以改善脑靶向递送,解决了诸如货物含量变异性等关键方法学限制,并提出了提高标准化和安全性的解决方案。总的来说,这些见解突出了外泌体的转化潜力,并为弥合基础研究与临床应用之间的差距提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23b3/12178025/08daccad4736/12951_2025_3528_Fig1_HTML.jpg

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