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Acid Stability of Carbon Paste Enzyme Electrodes

机译:碳糊酶电极的酸稳定性

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This note reports on the unusual protection of several enzymes against harsh pH conditions provided by carbon paste electrodes. Both glucose oxidase and polyphenol oxidase carbon paste amperometric biosensors display a remarkable resistance to acid deactivation compared to conventional biosensors prepared by electropolymeric entrapment of enzymes. For example, the carbon paste enzyme electrodes fully retain their activity upon stressing in strongly acidic conditions (pH approx2.0-2.5) for prolonged periods, where conventional (polymer-based) biosensors rapidly lose most of their response. Such unusual acid stability of carbon paste enzyme electrodes is attributed to the "pH memory" of enzymes in the hydrophobic paste environment, to the barrier to hydronium ions provided by the pasting liquid and to decreased conformational mobility.
机译:本说明报告了几种酶针对碳糊电极提供的苛刻pH条件的异常保护。与通过酶的电聚合捕获制备的常规生物传感器相比,葡萄糖氧化酶和多酚氧化酶碳糊电流型生物传感器均显示出显着的抗酸失活性。例如,碳糊酶电极在强酸性条件下(pH大约2.0-2.5)长时间处于应力状态时会完全保留其活性,而传统的(基于聚合物的)生物传感器会很快失去大部分响应。碳糊酶电极的这种异常的酸稳定性归因于酶在疏水性糊剂环境中的“ pH值记忆”,归因于糊状液体对水合氢离子的阻隔和构象迁移率降低。

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