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基于功能性DNA的水凝胶:开发、性质及生物学应用

Functional DNA Based Hydrogels: Development, Properties and Biological Applications.

作者信息

Morya Vinod, Walia Shanka, Mandal Biman B, Ghoroi Chinmay, Bhatia Dhiraj

机构信息

Biological Engineering Discipline, Indian Institute of Technology Gandhinagar, Palaj, Gujarat 382355, India.

Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam India.

出版信息

ACS Biomater Sci Eng. 2020 Nov 9;6(11):6021-6035. doi: 10.1021/acsbiomaterials.0c01125. Epub 2020 Oct 23.

Abstract

DNA-based nanostructures have emerged as a versatile component for nanoscale construction of soft materials. Multiple structural, functional properties and versatility in conjugation with other biomolecules made DNA the material of choice to use in various biomedical applications. DNA-based hydrogels significantly attracted attention in recent years owing to their properties and applications in biosensing, bioimaging, and therapeutics. Here, we summarize the recent advances in the area of DNA hydrogels where these are used either as structural material or as functional entities to make hybrid constructs with various biomedical applications. Multiple synthetic routes for constructing DNA hydrogels are summarized first, where the structural motifs and spatial arrangements are considered for the classification of DNA materials. We then present the characterization and properties of DNA hydrogels using multiple imaging and biophysical techniques. Further, different biomedical applications of DNA hydrogels are presented such as biosensing, bioimaging, and targeted drug delivery and as scaffolds to program cellular systems. Last, we discuss the vision and potential of DNA based hydrogels as an emerging class of therapeutically important devices for theragnostic and other biological applications.

摘要

基于DNA的纳米结构已成为用于软材料纳米级构建的通用组件。DNA具有多种结构、功能特性以及与其他生物分子结合的多功能性,使其成为各种生物医学应用中首选的材料。基于DNA的水凝胶近年来因其在生物传感、生物成像和治疗方面的特性及应用而备受关注。在此,我们总结了DNA水凝胶领域的最新进展,其中这些水凝胶既用作结构材料,也用作功能实体以构建具有各种生物医学应用的杂化构建体。首先总结了构建DNA水凝胶的多种合成途径,其中根据结构基序和空间排列对DNA材料进行分类。然后我们使用多种成像和生物物理技术介绍了DNA水凝胶的表征和特性。此外,还介绍了DNA水凝胶的不同生物医学应用,如生物传感、生物成像、靶向药物递送以及作为编程细胞系统的支架。最后,我们讨论了基于DNA的水凝胶作为一类新兴的用于诊疗和其他生物应用的重要治疗设备的前景和潜力。

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