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Rapid impedance measurement of tethered bilayer lipid membrane biosensors

机译:系留双层脂质膜生物传感器的快速阻抗测量

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Tethered bilayer lipid membranes (tBLM) offer a promising means to immobilize membrane proteins for sensor applications and study biological phenomena including membrane-nanoparticle interactions. tBLM biointerfaces are typically characterized using electrochemical impedance spectroscopy (EIS) in the 1mHz to 1Hz range due to interface parasitics. To enable rapid characterization of biointerfaces for high throughput applications, this paper introduces a method for high resolution EIS characterization of tBLMs at higher frequencies. The tBLM equivalent electrical model is analyzed, and the benefit of extracting the real portion of interface admittance is described. Mathematical analysis shows that the maximum frequency for measuring membrane resistance is a function of membrane characteristics and that small area membranes could enable measurement well into the kHz range, permitting observation of millisecond membrane protein activity in biosensor arrays.
机译:拴系双层脂质膜(tBLM)提供了一种有前途的方法,可以固定膜蛋白以用于传感器应用并研究包括膜-纳米颗粒相互作用在内的生物学现象。由于界面寄生,tBLM生物界面通常使用1mHz至1Hz范围内的电化学阻抗谱(EIS)进行表征。为了能够快速表征高通量应用的生物界面,本文介绍了一种在较高频率下对tBLM进行高分辨率EIS表征的方法。分析了tBLM等效电模型,并描述了提取界面导纳实部的好处。数学分析表明,用于测量膜电阻的最大频率是膜特性的函数,而小面积的膜可以很好地在kHz范围内进行测量,从而可以观察生物传感器阵列中毫秒级膜蛋白的活性。

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