Cai Rongfeng, Chen Xin, Zhang Yuting, Wang Xiaoli, Zhou Nandi
The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122 China.
Syst Microbiol Biomanuf. 2023;3(2):223-245. doi: 10.1007/s43393-022-00140-5. Epub 2022 Oct 10.
Aptamers are single-stranded DNA or RNA molecules that have high affinity and selectivity to bind to specific targets. Compared to antibodies, aptamers are easy to in vitro synthesize with low cost, and exhibit excellent thermal stability and programmability. With these features, aptamers have been widely used in biology and medicine-related fields. In the meantime, a variety of systematic evolution of ligands by exponential enrichment (SELEX) technologies have been developed to screen aptamers for various targets. According to the characteristics of targets, customizing appropriate SELEX technology and post-SELEX optimization helps to obtain ideal aptamers with high affinity and specificity. In this review, we first summarize the latest research on the systematic bio-fabrication of aptamers, including various SELEX technologies, post-SELEX optimization, and aptamer modification technology. These procedures not only help to gain the aptamer sequences but also provide insights into the relationship between structure and function of the aptamers. The latter provides a new perspective for the systems bio-fabrication of aptamers. Furthermore, on this basis, we review the applications of aptamers, particularly in the fields of engineering biology, including industrial biotechnology, medical and health engineering, and environmental and food safety monitoring. And the encountered challenges and prospects are discussed, providing an outlook for the future development of aptamers.
适配体是对特定靶标具有高亲和力和选择性的单链DNA或RNA分子。与抗体相比,适配体易于体外合成且成本低,并表现出优异的热稳定性和可编程性。凭借这些特性,适配体已在生物学和医学相关领域得到广泛应用。与此同时,已开发出多种指数富集配体系统进化(SELEX)技术来筛选针对各种靶标的适配体。根据靶标的特性,定制合适的SELEX技术和SELEX后优化有助于获得具有高亲和力和特异性的理想适配体。在本综述中,我们首先总结了关于适配体系统生物制造的最新研究,包括各种SELEX技术、SELEX后优化和适配体修饰技术。这些程序不仅有助于获得适配体序列,还能深入了解适配体的结构与功能之间的关系。后者为适配体的系统生物制造提供了新的视角。此外,在此基础上,我们综述了适配体的应用,特别是在合成生物学领域,包括工业生物技术、医疗卫生工程以及环境和食品安全监测。并讨论了所遇到的挑战和前景,为适配体的未来发展提供了展望。