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提高基于核酸的纳米材料稳定性的方法。

Methods to Improve the Stability of Nucleic Acid-Based Nanomaterials.

机构信息

Department of Stomatology, First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, 310000, P.R. China.

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, P. R. China.

出版信息

Curr Drug Metab. 2023;24(5):315-326. doi: 10.2174/1389200224666230601091346.

Abstract

Nucleic acid strands can be synthesized into various nucleic acid-based nanomaterials (NANs) through strict base pairing. The self-assembled NANs are programmable, intelligent, biocompatible, non-immunogenic, and non-cytotoxic. With the rapid development of nanotechnology, the application of NANs in the biomedical fields, such as drug delivery and biological sensing, has attracted wide attention. However, the stability of NANs is often affected by the cation concentrations, enzymatic degradation, and organic solvents. This susceptibility to degradation is one of the most important factors that have restricted the application of NANs. NANs can be denatured or degraded under conditions of low cation concentrations, enzymatic presence, and organic solvents. To deal with this issue, a lot of methods have been attempted to improve the stability of NANs, including artificial nucleic acids, modification with specific groups, encapsulation with protective structures, etc. In this review, we summarized the relevant methods to have a deeper understanding of the stability of NANs.

摘要

核酸链可以通过严格的碱基配对合成各种核酸基纳米材料(NANs)。自组装的 NANs 具有可编程性、智能性、生物相容性、非免疫原性和非细胞毒性。随着纳米技术的快速发展,NANs 在药物输送和生物传感等生物医学领域的应用引起了广泛关注。然而,NANs 的稳定性常常受到阳离子浓度、酶降解和有机溶剂的影响。这种易降解性是限制 NANs 应用的最重要因素之一。在阳离子浓度低、存在酶和有机溶剂的条件下,NANs 会发生变性或降解。为了解决这个问题,人们尝试了很多方法来提高 NANs 的稳定性,包括人工核酸、特定基团修饰、保护性结构封装等。在这篇综述中,我们总结了相关方法,以更深入地了解 NANs 的稳定性。

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