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核酸及其类似物在生物医学中的应用。

Nucleic Acids and Their Analogues for Biomedical Applications.

机构信息

Department of Chemistry, City University of Hong Kong, Hong Kong SAR 999077, China.

Key Laboratory of Biochip Technology, Biotech and Health Care, Shenzhen Research Institute of City University of Hong Kong, Shenzhen 518057, China.

出版信息

Biosensors (Basel). 2022 Feb 4;12(2):93. doi: 10.3390/bios12020093.

Abstract

Nucleic acids are emerging as powerful and functional biomaterials due to their molecular recognition ability, programmability, and ease of synthesis and chemical modification. Various types of nucleic acids have been used as gene regulation tools or therapeutic agents for the treatment of human diseases with genetic disorders. Nucleic acids can also be used to develop sensing platforms for detecting ions, small molecules, proteins, and cells. Their performance can be improved through integration with other organic or inorganic nanomaterials. To further enhance their biological properties, various chemically modified nucleic acid analogues can be generated by modifying their phosphodiester backbone, sugar moiety, nucleobase, or combined sites. Alternatively, using nucleic acids as building blocks for self-assembly of highly ordered nanostructures would enhance their biological stability and cellular uptake efficiency. In this review, we will focus on the development and biomedical applications of structural and functional natural nucleic acids, as well as the chemically modified nucleic acid analogues over the past ten years. The recent progress in the development of functional nanomaterials based on self-assembled DNA-based platforms for gene regulation, biosensing, drug delivery, and therapy will also be presented. We will then summarize with a discussion on the advanced development of nucleic acid research, highlight some of the challenges faced and propose suggestions for further improvement.

摘要

核酸由于其分子识别能力、可编程性以及易于合成和化学修饰,正在成为强大而多功能的生物材料。各种类型的核酸已被用作基因调控工具或治疗具有遗传疾病的人类疾病的治疗剂。核酸还可用于开发用于检测离子、小分子、蛋白质和细胞的传感平台。通过与其他有机或无机纳米材料集成,可以提高它们的性能。为了进一步增强它们的生物学特性,可以通过修饰磷酸二酯骨架、糖部分、核苷碱基或结合部位来生成各种化学修饰的核酸类似物。或者,将核酸用作高度有序纳米结构自组装的构建块,将提高其生物稳定性和细胞摄取效率。在这篇综述中,我们将重点介绍过去十年中结构和功能天然核酸以及化学修饰的核酸类似物的开发和生物医学应用。还将介绍基于自组装 DNA 基平台的基因调控、生物传感、药物输送和治疗的功能纳米材料的最新进展。然后,我们将总结讨论核酸研究的高级发展,重点介绍面临的一些挑战,并提出进一步改进的建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67cf/8869748/37965d4404fd/biosensors-12-00093-g010.jpg

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