Li Lexun, Liu Shuang, Zhang Chunjuan, Guo Zhenzhen, Shao Shuxuan, Deng Xiaodan, Liu Qiaoling
Molecular Science and Biomedicine Laboratory (MBL) State Key Laboratory of Chemo/Bio-Sensing and Chemometrics College of Biology, Hunan University Changsha, Hunan, 410082, People's Republic of China.
Chemistry. 2022 Dec 9;28(69):e202202070. doi: 10.1002/chem.202202070. Epub 2022 Oct 11.
Due to its excellent programmability and biocompatibility, DNA molecule has unique advantages in cell surface engineering. Recent progresses provide a reliable and feasible way to engineer cell surfaces with diverse DNA molecules and DNA nanostructures. The abundant form of DNA nanostructures has greatly expanded the toolbox of DNA-based cell surface engineering and gave rise to a variety of novel and fascinating applications. In this review, we summarize recent advances in DNA-based cell surface engineering and its biological applications. We first introduce some widely used methods of immobilizing DNA molecules on cell surfaces and their application features. Then we discuss the approaches of employing DNA nanostructures and dynamic DNA nanotechnology as elements for creating functional cell surfaces. Finally, we review the extensive biological applications of DNA-based cell surface engineering and discuss the challenges and prospects of DNA-based cell surface engineering.
由于其出色的可编程性和生物相容性,DNA分子在细胞表面工程中具有独特优势。近期的进展为利用各种DNA分子和DNA纳米结构对细胞表面进行工程改造提供了可靠且可行的方法。DNA纳米结构的丰富形式极大地扩展了基于DNA的细胞表面工程工具箱,并催生了各种新颖且引人入胜的应用。在本综述中,我们总结了基于DNA的细胞表面工程及其生物学应用的最新进展。我们首先介绍一些将DNA分子固定在细胞表面的广泛使用的方法及其应用特点。然后我们讨论采用DNA纳米结构和动态DNA纳米技术作为创建功能性细胞表面元件的方法。最后,我们综述了基于DNA的细胞表面工程的广泛生物学应用,并讨论了基于DNA的细胞表面工程的挑战与前景。
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