Department of Pharmaceutical Biotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.
Department of Pharmaceutical Biotechnology, School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran; Pharmaceutical Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran.
Biosens Bioelectron. 2019 Oct 15;143:111662. doi: 10.1016/j.bios.2019.111662. Epub 2019 Aug 29.
Traditional analytical techniques face many limitations such as time-consuming process, complicated sample preparation, high consumption of reagents and need for expensive equipment. So, it is important that simple, rapid and sensitive detection methods are introduced. Nucleic acids-based assays, particularly aptamers, have a great impact on modern life sciences for biological analysis and target detection. Aptamer-based biosensors with unique recognition properties including high specificity and affinity, rapid response and simple fabrication have attracted much attention. It is believed that two- and three-dimensional structures, sometimes referred to as DNA origami, using DNA aptamers can show more selective binding affinity and better stability over other nucleic acids forms. In this review, we will focus on recent advances in the development and uses of electrochemical and optical DNA origami-based aptasensors to supply readers with a comprehensive understanding of their improvements. Also, the challenges and awards of these approaches are discussed.
传统的分析技术面临许多限制,例如耗时的过程、复杂的样品制备、试剂的高消耗和对昂贵设备的需求。因此,引入简单、快速和灵敏的检测方法非常重要。基于核酸的分析方法,特别是适体,对现代生命科学的生物分析和目标检测产生了重大影响。基于适体的生物传感器具有独特的识别特性,包括高特异性和亲和力、快速响应和简单的制造,引起了广泛关注。人们相信,使用 DNA 适体的二维和三维结构,有时称为 DNA 折纸术,可以表现出比其他核酸形式更高的选择性结合亲和力和更好的稳定性。在这篇综述中,我们将重点介绍电化学和光学 DNA 折纸术基适体传感器的最新进展,为读者提供对其改进的全面了解。此外,还讨论了这些方法的挑战和优势。