细胞分离的进展:利用DNA纳米材料进行高特异性识别和分离。

Chem & Bio Engineering Pub Date : 2025-01-31 eCollection Date: 2025-03-27 DOI:10.1021/cbe.4c00185
Huimin Bao, Yao Yao, Wenqi Tang, Dayong Yang
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引用次数: 0

摘要

细胞分离的进步对于理解细胞表型和功能至关重要,对研究和治疗应用都有影响。本文回顾了细胞分离技术的发展,将它们分为物理方法和基于亲和力的方法,主要关注后者,因为它具有高特异性。在亲和技术中,DNA纳米材料因其独特的性质和多样的纳米结构而成为生物分子识别的有力工具。我们讨论了各种DNA纳米材料,包括线性适体,多价DNA结构,DNA折纸和DNA水凝胶及其在细胞识别和分离中的作用。每个部分都强调了这些DNA纳米结构的独特特征,并提供了最近研究中的例子,证明了它们在细胞分离和释放中的应用。我们还比较了四种DNA纳米材料,概述了它们各自的贡献,并确定了进一步发展的挑战和机遇。我们得出结论,DNA纳米技术作为细胞分离的变革性解决方案具有巨大的前景,特别是在个性化治疗的背景下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in Cell Separation: Harnessing DNA Nanomaterials for High-Specificity Recognition and Isolation.

Advancements in cell separation are essential for understanding cellular phenotypes and functions, with implications for both research and therapeutic applications. This review examines the evolution of cell separation techniques, categorizing them into physical and affinity-based methods, with a primary focus on the latter due to its high specificity. Among affinity techniques, DNA nanomaterials have emerged as powerful tools for biomolecular recognition owing to their unique properties and diverse range of nanostructures. We discuss various DNA nanomaterials, including linear aptamers, multivalent DNA constructs, DNA origami, and DNA hydrogels and their roles in cell recognition and separation. Each section highlights the distinctive characteristics of these DNA nanostructures, providing examples from recent studies that demonstrate their applications in cell isolation and release. We also compare the four DNA nanomaterials, outlining their individual contributions and identifying the remaining challenges and opportunities for further development. We conclude that DNA nanotechnology holds great promise as a transformative solution for cell separation, particularly in the context of personalized therapeutics.

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