Karimzadeh Zahra, Mahmoudpour Mansour, Rahimpour Elaheh, Jouyban Abolghasem
Pharmaceutical Analysis Research Center, Faculty of Pharmacy, Tabriz University of Medical Sciences Tabriz Iran.
Miandoab Schools of Medical Sciences Miandoab Iran.
RSC Adv. 2024 Mar 21;14(14):9571-9586. doi: 10.1039/d3ra07059j. eCollection 2024 Mar 20.
Carcinoembryonic antigens (CEAs) are prominent cancer biomarkers that enable the early detection of numerous cancers. For effective CEA screening, rapid, portable, efficient, and sensitive diagnosis approaches should be devised. Metal-organic frameworks (MOFs) are porous crystalline materials that have received major attention for application in high-efficiency signal probes owing to their advantages such as large specific surface area, superior chemical stability and tunability, high porosity, easy surface functional modification, and adjustable size and morphology. Immunoassay strategies using antigen-antibody specific interaction are one of the imperative means for rapid and accurate measurement of target molecules in biochemical fields. The emerging MOFs and their nanocomposites are synthesized with excellent features, providing promising potential for immunoassays. This article outlines the recent breakthroughs in the synthesis approaches of MOFs and overall functionalization mechanisms of MOFs with antigen/antibody and their uses in the CEA immunoassays, which operate according to electrochemical, electrochemiluminescent and colorimetric techniques. The prospects and limitations of the preparation and immunoassay applications of MOF-derived hybrid nanocomposites are also discussed at the end.
癌胚抗原(CEA)是重要的癌症生物标志物,能够实现多种癌症的早期检测。为了进行有效的CEA筛查,应设计出快速、便携、高效且灵敏的诊断方法。金属有机框架(MOF)是多孔晶体材料,由于其具有比表面积大、化学稳定性和可调性优异、孔隙率高、易于进行表面功能修饰以及尺寸和形态可调节等优点,在高效信号探针应用方面受到了广泛关注。利用抗原 - 抗体特异性相互作用的免疫分析策略是生物化学领域快速准确测量目标分子的重要手段之一。新兴的MOF及其纳米复合材料具有优异的特性,为免疫分析提供了广阔的应用前景。本文概述了MOF合成方法的最新突破、MOF与抗原/抗体的整体功能化机制及其在CEA免疫分析中的应用,这些免疫分析是根据电化学、电化学发光和比色技术进行的。最后还讨论了MOF衍生的杂化纳米复合材料制备及免疫分析应用的前景和局限性。