Khan Niazul I, Song Edward
Department of Electrical and Computer Engineering, University of New Hampshire, Durham, NH 03824, USA.
Materials Science Program, University of New Hampshire, Durham, NH 03824, USA.
Micromachines (Basel). 2020 Feb 20;11(2):220. doi: 10.3390/mi11020220.
Aptamers are oligonucleotides or peptides that are selected from a pool of random sequences that exhibit high affinity toward a specific biomolecular species of interest. Therefore, they are ideal for use as recognition elements and ligands for binding to the target. In recent years, aptamers have gained a great deal of attention in the field of biosensing as the next-generation target receptors that could potentially replace the functions of antibodies. Consequently, it is increasingly becoming popular to integrate aptamers into a variety of sensing platforms to enhance specificity and selectivity in analyte detection. Simultaneously, as the fields of lab-on-a-chip (LOC) technology, point-of-care (POC) diagnostics, and personal medicine become topics of great interest, integration of such aptamer-based sensors with LOC devices are showing promising results as evidenced by the recent growth of literature in this area. The focus of this review article is to highlight the recent progress in aptamer-based biosensor development with emphasis on the integration between aptamers and the various forms of LOC devices including microfluidic chips and paper-based microfluidics. As aptamers are extremely versatile in terms of their utilization in different detection principles, a broad range of techniques are covered including electrochemical, optical, colorimetric, and gravimetric sensing as well as surface acoustics waves and transistor-based detection.
适配体是从随机序列库中筛选出来的寡核苷酸或肽,它们对特定的目标生物分子具有高亲和力。因此,它们是用作识别元件和与靶标结合的配体的理想选择。近年来,适配体作为下一代靶标受体在生物传感领域备受关注,有望取代抗体的功能。因此,将适配体整合到各种传感平台以提高分析物检测的特异性和选择性变得越来越普遍。同时,随着芯片实验室(LOC)技术、即时检测(POC)诊断和个人医疗领域成为热门话题,这种基于适配体的传感器与LOC设备的整合显示出了令人鼓舞的结果,该领域近期的文献增长就是明证。这篇综述文章的重点是突出基于适配体的生物传感器开发的最新进展,重点是适配体与各种形式的LOC设备(包括微流控芯片和纸基微流控)之间的整合。由于适配体在不同检测原理中的应用极其多样,本文涵盖了广泛的技术,包括电化学、光学、比色、重量传感以及表面声波和基于晶体管的检测。