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基于核酸的自组装纳米载体用于靶向给药和控释给药的研究进展

Insights into nucleic acid-based self-assembling nanocarriers for targeted drug delivery and controlled drug release.

作者信息

Chen Keren, Zhang Yangzi, Zhu Longjiao, Chu Huashuo, Shao Xiangli, Asakiya Charles, Huang Kunlun, Xu Wentao

机构信息

Key Laboratory of Safety Assessment of Genetically Modified Organism (Food Safety), College of Food Science and Nutritional Engineering, China Agricultural University, No. 17, Qinghua East Road, Beijing 100083, China; Key Laboratory of Precision Nutrition and Food Quality, Department of Nutrition and Health, China Agricultural University, No. 17, Qinghua East Road, Beijing 100083, China.

Key Laboratory of Safety Assessment of Genetically Modified Organism (Food Safety), College of Food Science and Nutritional Engineering, China Agricultural University, No. 17, Qinghua East Road, Beijing 100083, China; Key Laboratory of Precision Nutrition and Food Quality, Department of Nutrition and Health, China Agricultural University, No. 17, Qinghua East Road, Beijing 100083, China.

出版信息

J Control Release. 2022 Jan;341:869-891. doi: 10.1016/j.jconrel.2021.12.020. Epub 2021 Dec 21.

Abstract

Over the past few decades, rapid advances of nucleic acid nanotechnology always drive the development of nanoassemblies with programmable design, powerful functionality, excellent biocompatibility and outstanding biosafety. Nowadays, nucleic acid-based self-assembling nanocarriers (NASNs) play an increasingly greater role in the research and development in biomedical studies, particularly in drug delivery, release and targeting. In this review, NASNs are systematically summarized the strategies cooperated with their broad applications in drug delivery. We first discuss the self-assembling methods of nanocarriers comprised of DNA, RNA and composite materials, and summarize various categories of targeting media, including aptamers, small molecule ligands and proteins. Furthermore, drug release strategies by smart-responding multiple kinds of stimuli are explained, and various applications of NASNs in drug delivery are discussed, including protein drugs, nucleic acid drugs, small molecule drugs and nanodrugs. Lastly, we propose limitations and potential of NASNs in the future development, and expect that NASNs enable facilitate the development of new-generation drug vectors to assist in solving the growing demands on disease diagnosis and therapy or other biomedicine-related applications in the real world.

摘要

在过去几十年中,核酸纳米技术的快速发展一直推动着具有可编程设计、强大功能、优异生物相容性和出色生物安全性的纳米组装体的发展。如今,基于核酸的自组装纳米载体(NASNs)在生物医学研究的研发中发挥着越来越重要的作用,特别是在药物递送、释放和靶向方面。在这篇综述中,系统总结了NASNs及其在药物递送中的广泛应用的策略。我们首先讨论了由DNA、RNA和复合材料组成的纳米载体的自组装方法,并总结了各类靶向介质,包括适体、小分子配体和蛋白质。此外,还解释了通过对多种刺激进行智能响应的药物释放策略,并讨论了NASNs在药物递送中的各种应用,包括蛋白质药物、核酸药物、小分子药物和纳米药物。最后,我们提出了NASNs在未来发展中的局限性和潜力,并期望NASNs能够促进新一代药物载体的发展,以帮助解决现实世界中对疾病诊断和治疗或其他生物医学相关应用日益增长的需求。

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