Beijing Key Laboratory for Bioengineering and Sensing Technology, School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Department of Orthopaedics and Trauma, Peking University People's Hospital, Beijing, 100044, China.
J Mater Chem B. 2020 Mar 11;8(10):1991-2009. doi: 10.1039/c9tb02716e.
Deoxyribonucleic acid (DNA) nanotechnology is a relevant research field of nano-biotechnology, which has developed rapidly in recent years. Researchers have studied DNA far more than they have studied its genetic characteristics, and now it has evolved into the field of nanomedical materials. A variety of articles based on DNA nanostructures can be obtained by rational design and controllable preparation. In particular, intelligent DNA-based hydrogel materials have attracted significant attention as an essential representative of macro DNA materials. They have shown a wide range of applications, especially in the field of biomedical applications. DNA-based hydrogels have many unique and fascinating properties, such as, excellent biocompatibility, biodegradability, basic programmability, catalytic activities, therapeutic potential, and molecular recognition and bonds. The intelligent DNA hydrogel will undergo abrupt changes in the stimulation of temperature, pH value, ionic strength, and solvent composition. These factors can also be used for applications in intelligent materials that play an essential role in biomedical sciences. To date, intelligent DNA hydrogels have been reported for many applications, including controlled drug delivery, targeted gene therapy, cancer therapy, biosensors, protein production, and 3D cell cultures. However, the large-scale production of intelligent DNA hydrogels has not yet been realized, and the synergistic multifunctional integration has not been explored. This review summarizes the current state of DNA nanostructures, especially the intelligent DNA-based hydrogel materials, and focuses on design and engineering for bio-responsive use and proposes some reasonable prospects for the future development of intelligent DNA-based hydrogel materials.
脱氧核糖核酸(DNA)纳米技术是纳米生物技术的一个相关研究领域,近年来发展迅速。研究人员对 DNA 的研究远远超过了对其遗传特性的研究,现在它已经发展成为纳米医学材料领域。通过合理的设计和可控的制备,可以得到各种基于 DNA 纳米结构的文章。特别是,智能 DNA 水凝胶材料作为宏观 DNA 材料的重要代表,引起了人们的广泛关注。它们具有广泛的应用,特别是在生物医学应用领域。基于 DNA 的水凝胶具有许多独特而迷人的特性,如极好的生物相容性、可生物降解性、基本可编程性、催化活性、治疗潜力以及分子识别和键合。智能 DNA 水凝胶在温度、pH 值、离子强度和溶剂组成的刺激下会发生突然变化。这些因素也可用于智能材料的应用,在生物医学科学中发挥着重要作用。迄今为止,已经报道了智能 DNA 水凝胶在许多应用中的应用,包括控制药物释放、靶向基因治疗、癌症治疗、生物传感器、蛋白质生产和 3D 细胞培养。然而,智能 DNA 水凝胶的大规模生产尚未实现,协同多功能集成也尚未得到探索。本综述总结了 DNA 纳米结构的现状,特别是智能 DNA 基水凝胶材料,重点介绍了生物响应性设计和工程,并对智能 DNA 基水凝胶材料的未来发展提出了一些合理的展望。