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Chemical sensing with chemically modified electrodes that mimic gating at biomembranes incorporating ion-channel receptors [Review]

机译:化学修饰电极模拟结合了离子通道受体的生物膜的选通,从而实现化学感应[综述]

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Selective binding of electroinactive analytes to electrodes that are chemically modified with receptors can be used to control heterogeneous redox reactions of electroactive species. The latter are in this context often called markers because their use allows the indirect determination of the electroinactive analytes with the inherent possibility for chemical signal amplification. Two different approaches can be distinguished. To structurally mimic natural ion-channel proteins, electrodes are modified with artificial receptors having intramolecular channels that can be blocked by formation of inclusion complexes with the analyte. In more abstract analogy to the working principle of ion-channel proteins, binding of usually charged analytes to receptors without intramolecular channels is used to control redox reactions of the marker species on the basis of electrostatic interactions, and, occasionally, of steric repulsion. The versatility and general characteristics of this type of chemically gated sensors are discussed, and specific examples from recent studies are presented. [References: 117]
机译:电活性分析物与经受体化学修饰的电极的选择性结合可用于控制电活性物质的异质氧化还原反应。后者在这种情况下通常被称为标记物,因为它们的使用允许间接确定电惰性分析物,并具有化学信号放大的固有可能性。可以区分两种不同的方法。为了在结构上模拟天然离子通道蛋白,用具有分子内通道的人工受体修饰电极,该通道可以通过与分析物形成包合物形成封闭。与离子通道蛋白的工作原理更抽象地类似,通常将带电的分析物与没有分子内通道的受体结合,用于基于静电相互作用(有时是空间排斥)来控制标记物的氧化还原反应。讨论了这种类型的化学门控传感器的多功能性和一般特性,并提供了来自最近研究的具体示例。 [参考:117]

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