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Evaluation of different functional groups for covalent immobilization of enzymes in the development of biosensors with oxygen optical transduction

机译:在氧光转导生物传感器的开发中,评估不同功能基团对酶的共价固定化

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Four different types of polymeric particles with different functional groups on their surface have been evaluated to develop biosensors using glucose oxidase as a model enzyme. Direct covalent immobilization was achieved on particles functionalized with chloride, epoxy and vinyl groups via the reactive functional groups on the surface, whereas particles functionalized with carboxylic groups, used as reference materials, were pre-activated with carbodiimide. Immobilization was successfully performed under very mild conditions (20 °C, pH 8.0). In order to determine the advantages and disadvantages of each functional group, both the amounts of immobilized enzymes and their relative activities were fully investigated. In order to demonstrate their applicability on the design on biosensing with oxygen optical transduction, the functionalized particles were co-immobilized in gold chips with oxygen sensing particles (PSMA–PtTFPP) using electrophoretic deposition and characterised for glucose determination in solution...
机译:已经评估了在其表面上具有不同官能团的四种不同类型的聚合物颗粒,以开发使用葡萄糖氧化酶作为模型酶的生物传感器。通过表面上的反应性官能团在用氯,环氧基和乙烯基官能化的颗粒上实现了直接的共价固定,而在用作参比材料的用羧基官能化的颗粒上用碳二亚胺预活化了。在非常温和的条件下(20°C,pH 8.0)成功进行了固定。为了确定每个官能团的优缺点,已对固定化酶的量及其相对活性进行了充分研究。为了证明其在氧气光学传感生物传感设计中的适用性,通过电泳沉积将功能化颗粒与氧气传感颗粒(PSMA–PtTFPP)共固定在金芯片中,并对溶液中的葡萄糖测定进行了表征。

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