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Recent Advances in the Design and Sensing Applications of Hemin/Coordination Polymer-Based Nanocomposites

机译:血葱/配位聚合物基纳米复合材料的设计和感测应用的最新进展

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摘要

The fabrication of biomimetic catalysts as substituents for enzymes is of critical interest in the field due to the problems associated with the extraction, purification, and storage of enzymes in sensing applications. Of these mimetics, hemin/coordination polymer-based nanocomposites, mainly hemin/metal-organic frameworks (MOF), have been developed for various biosensing applications because of the unique properties of each component, while trying to mimic the normal biological functions of heme within the protein milieu of enzymes. This critical review first discusses the different catalytic functions of heme in the body in the form of enzyme/protein structures. The properties of hemin dimerization are then elucidated with the supposed models of hemin oxidation. After that, the progress in the fabrication of hemin/MOF nanocomposites for the sensing of diverse biological molecules is discussed. Finally, the challenges in developing this type of composites are examined as well as possible proposals for future directions to enhance the sensing performance in this field further.
机译:由于与在感测应用中的酶的提取,纯化和储存相关的问题,对酶的取代基的酶催化剂的制备是对酶的批判性感兴趣的。在这些模拟物中,由于每个组分的独特性能,已经为各种生物传感应用开发了血红素/配位聚合物基纳米复合材料,主要是为各种生物传感应用而开发的,同时试图模仿血红素的正常生物功能酶的蛋白质milieu。这种批判性审查首先讨论了酶/蛋白质结构形式的身体中血红素的不同催化功能。然后用假定的血红素氧化模型阐明血红素二聚化的性质。此后,讨论了血红素/ MOF纳米复合材料的制备中的进展,用于感测不同的生物分子。最后,检查开发这种复合材料的挑战以及未来方向的可能提案进一步增强了该领域的传感性能。

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