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Thermal Stabilization of Enzymes Immobilized within Carbon Paste Electrodes

机译:固定在碳糊电极内的酶的热稳定性

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In this note we report on the remarkable thermal stabilization of enzymes immobilized in carbon paste electrodes. Amperometric biosensors are shown for the first time to withstand a prolonged high-temperature (>50 ℃) stress. Nearly full activity of glucose oxidase is retained over periods of up to 4 months of thermal stress at 60-80 ℃. Dramatic improvements in the thermostability are observed for polyphenol oxidase, lactate oxidase, alcohol oxidase, horseradish peroxidase, and amino acid oxidase. Such resistance to heat-induced denaturation is attributed to the conformational rigidity of these biocatalysts within the highly hydrophobic (mineral oil or silicone grease) pasting liquid. While no chemical stabilizer is needed for attaining such protective action, it appears that low humidity (i.e., low water content) is essential for minimizing the protein mobility. Besides their implications for electrochemical biosensors, such observations should lead to a new generation of thermoresistant enzyme reactors based on nonpolar semisolid supports.
机译:在本说明中,我们报告了固定在碳糊电极中的酶具有卓越的热稳定性。首次展示了安培生物传感器,可以承受长时间的高温(> 50℃)压力。在60-80℃的热应力下长达4个月,葡萄糖氧化酶几乎保持了全部活性。对于多酚氧化酶,乳酸氧化酶,醇氧化酶,辣根过氧化物酶和氨基酸氧化酶,观察到热稳定性的显着改善。这种对热诱导变性的抵抗力归因于这些生物催化剂在高疏水性(矿物油或硅脂)糊化液中的构象刚性。虽然不需要化学稳定剂来获得这种保护作用,但是看来低湿度(即低水含量)对于使蛋白质迁移率最小化是必不可少的。除了它们对电化学生物传感器的影响外,这些观察结果还将导致新一代基于非极性半固体支持物的耐热酶反应器。

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