School of Marine Science and Technology, Harbin Institute of Technology (Weihai), Wenhua West Road, 2#, Weihai, 264209, PR China.
School of Environment, Harbin Institute of Technology, Harbin, 150090, PR China.
Mol Biol Rep. 2023 Jun;50(6):5425-5438. doi: 10.1007/s11033-023-08410-8. Epub 2023 Apr 26.
Since cells are the basic structural and functional units of organisms, the detection or quantitation of cells is one of the most common basic problems in life science research. The established cell detection techniques mainly include fluorescent dye labeling, colorimetric assay, and lateral flow assay, all of which employ antibodies as cell recognition elements. However, the widespread application of the established methods generally dependent on antibodies is limited, because the preparation of antibodies is complicated and time-consuming, and unrecoverable denaturation is prone to occur with antibodies. By contrast, aptamers that are generally selected through the systematic evolution of ligands by exponential enrichment can avoid the disadvantages of antibodies due to their controllable synthesis, thermostability, and long shelf life, etc. Accordingly, aptamers may serve as novel molecular recognition elements like antibodies in combination with various techniques for cell detection. This paper reviews the developed aptamer-based cell detection methods, mainly including aptamer-fluorescent labeling, aptamer-isothermal amplification assay, electrochemical aptamer sensor, aptamer-based lateral flow analysis, and aptamer-colorimetric assay. The principles, advantages, progress of application in cell detection and future development trend of these methods were specially discussed. Overall, different assays are suitable for different detection purposes, and the development of more accurate, economical, efficient, and rapid aptamer-based cell detection methods is always on the road in the future. This review is expected to provide a reference for achieving efficient and accurate detection of cells as well as improving the usefulness of aptamers in the field of analytical applications.
由于细胞是生物的基本结构和功能单位,因此细胞的检测或定量是生命科学研究中最常见的基本问题之一。已建立的细胞检测技术主要包括荧光染料标记、比色测定和侧向流动测定,所有这些技术都使用抗体作为细胞识别元件。然而,广泛应用已建立的方法通常依赖于抗体,因为抗体的制备复杂且耗时,并且抗体容易发生不可恢复的变性。相比之下,通过指数富集的配体系统进化选择的适体由于其可控的合成、热稳定性和长保质期等优点,可以避免抗体的缺点。因此,适体可以像抗体一样结合各种细胞检测技术作为新型分子识别元件。本文综述了已开发的基于适体的细胞检测方法,主要包括适体-荧光标记、适体等温扩增测定、电化学适体传感器、基于适体的侧向流动分析和适体比色测定。特别讨论了这些方法的原理、优点、在细胞检测中的应用进展以及未来的发展趋势。总体而言,不同的测定方法适用于不同的检测目的,未来将不断开发更准确、经济、高效和快速的基于适体的细胞检测方法。本文的综述有望为实现细胞的高效和准确检测以及提高适体在分析应用领域的实用性提供参考。