Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei, 10607, Taiwan.
Biotechnology Research Center, Shiraz University of Medical Sciences, Shiraz, 1439-14693, Iran.
Talanta. 2024 Aug 1;275:126097. doi: 10.1016/j.talanta.2024.126097. Epub 2024 Apr 17.
The rapid developments in the field of zeolitic imidazolate frameworks (ZIFs) in recent years have created unparalleled opportunities for the development of unique bioactive ZIFs for a range of biosensor applications. Integrating bioactive molecules such as DNA, aptamers, and antibodies into ZIFs to create bioactive ZIF composites has attracted great interest. Bioactive ZIF composites have been developed that combine the multiple functions of bioactive molecules with the superior chemical and physical properties of ZIFs. This review thoroughly summarizes the ZIFs as well as the novel strategies for incorporating bioactive molecules into ZIFs. They are used in many different applications, especially in biosensors. Finally, biosensor applications of bioactive ZIFs were investigated in optical (fluorescence and colorimetric) and electrochemical (amperometric, conductometric, and impedance) fields. The surface of ZIFs makes it easier to immobilize bioactive molecules like DNA, enzymes, or antibodies, which in turn enables the construction of cutting-edge, futuristic biosensors.
近年来,沸石咪唑酯骨架(ZIFs)领域的快速发展为开发用于各种生物传感器应用的独特生物活性 ZIFs 创造了前所未有的机会。将 DNA、适体和抗体等生物活性分子整合到 ZIFs 中以创建生物活性 ZIF 复合材料引起了极大的兴趣。已经开发出了生物活性 ZIF 复合材料,它们将生物活性分子的多种功能与 ZIFs 的卓越化学和物理性质结合在一起。本文全面总结了 ZIFs 以及将生物活性分子纳入 ZIFs 的新策略。它们被应用于许多不同的应用领域,特别是在生物传感器中。最后,研究了生物活性 ZIFs 在光学(荧光和比色)和电化学(安培、电导和阻抗)领域的生物传感器应用。ZIFs 的表面更容易固定 DNA、酶或抗体等生物活性分子,这反过来又使构建尖端、未来感的生物传感器成为可能。