Department of Biology and Chemistry, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong SAR, China.
Key Laboratory of Biochip Technology, Biotech and Health Centre, Shenzhen Research Institute of City University of Hong Kong, Shenzhen, 518057, China.
Small. 2017 Feb;13(7). doi: 10.1002/smll.201602881. Epub 2016 Dec 22.
Stimuli-responsive DNA-based materials represent a major class of remarkable functional nanomaterials for nano-biotechnological applications. In this review, recent progress in the development of stimuli-responsive systems based on self-assembled DNA nanostructures is introduced and classified. Representative examples are presented in terms of their design, working principles and mechanisms to trigger the response of the stimuli-responsive DNA system upon expose to a large variety of stimuli including pH, metal ions, oligonucleotides, small molecules, enzymes, heat, and light. Substantial in vitro studies have clearly revealed the advantages of the use of stimuli-responsive DNA nanomaterials in different biomedical applications, particularly for biosensing, drug delivery, therapy and diagnostic purposes in addition to bio-computing. Some of the challenges faced and suggestions for further development are also highlighted.
刺激响应型 DNA 基材料是一类重要的功能纳米材料,在纳米生物技术中有广泛的应用。本文综述了基于自组装 DNA 纳米结构的刺激响应体系的最新进展,并进行了分类。根据设计、工作原理和机制,选择了一些有代表性的例子来展示,这些例子可以在暴露于各种刺激物(包括 pH 值、金属离子、寡核苷酸、小分子、酶、热和光)时触发刺激响应 DNA 系统的响应。大量的体外研究清楚地表明,刺激响应 DNA 纳米材料在不同的生物医学应用中的优势,特别是在生物传感、药物输送、治疗和诊断以及生物计算方面。本文还强调了所面临的一些挑战和进一步发展的建议。