Institute of Food Biotechnology and Genomics, National Academy of Sciences of Ukraine, Osypovskogo str., 2a, 04123, Kyiv, Ukraine.
J Fluoresc. 2022 Sep;32(5):1713-1723. doi: 10.1007/s10895-022-02968-5. Epub 2022 Jun 7.
Quantum dots, or nanoscale semiconductors, are one of the most important materials for various research and development purposes. Due to their advantageous photoluminescence and electronic properties, namely, their unique photostability, high brightness, narrow emission spectra from visible to near-infrared wavelengths, convey them significant advantages over widely used fluorochromes, including organic dyes, fluorescent probes. Quantum dots are a unique instrument for a wide range of immunoassays with antibodies. The paper provides an overview of the developed and already applied methods of quantum dot surface modification, quantum dots conjugation to different antibodies (non-covalent, direct covalent linkage or with the use of special adapter molecules), as well as practical examples of recent quantum dot-antibody applications in the immunofluorescence microscopy for cell and cell structure imaging, fluorescent assays for biomolecules detection and in diagnostics of various diseases. The review presents advantages of quantum dot-antibody conjugation technology over the existing methods of immunofluorescence studies and a forward look into its potential prospects in biological and biomedical research.
量子点,或纳米半导体,是用于各种研究和开发目的的最重要材料之一。由于其有利的光致发光和电子特性,即其独特的光稳定性、高亮度、从可见到近红外波长的窄发射光谱,与广泛使用的荧光染料(包括有机染料、荧光探针)相比,它们具有显著的优势。量子点是一种用于各种免疫分析的独特工具,与抗体结合。本文概述了已开发和已应用的量子点表面修饰方法,量子点与不同抗体的缀合(非共价、直接共价键合或使用特殊连接子分子),以及最近在免疫荧光显微镜中用于细胞和细胞结构成像、生物分子检测荧光分析以及各种疾病诊断的量子点-抗体应用的实际例子。本文综述了量子点-抗体偶联技术相对于现有免疫荧光研究方法的优势,并对其在生物和生物医学研究中的潜在前景进行了展望。