卵巢激素雌酮-葡萄糖醛酸酯(E1G)定量-阻抗电化学光谱法

A. I. Zia, S. Mukhopadhyay, P. Yu, I. Al-Bahadly, A. Yudhana, C. Gooneratne, J. Kosel
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引用次数: 7

摘要

采用电化学阻抗谱(EIS)技术对卵巢激素雌二醇的重要代谢物雌酮葡萄糖醛酸酯(E1G)进行了检测和浓度测定。在单晶硅衬底上用溅射金电极耦合EIS制作了微型平面间数字(ID)电容式传感器,用于测量上述激素代谢物的电导率、渗透率和介电性能。在传感器表面涂覆一层氮化硅(50 μ m)薄膜作为钝化层,以避免Faradic电流通过传感器。将样品置于一定频率范围内的电扰动下,得到缓冲溶液中不同浓度的E1G的阻抗谱。在Randle等效电路模型的基础上,研究了样品电导与E1G浓度的关系,并对结果进行了分析,推导出恒相等效(CPE)电路模型,以评价电化学电池中发生的动力学过程在溶液-电极界面产生的双层电容。传感器的灵敏度根据浓度进行了评估。结果分析证实,制造ID传感器与EIS一起可以提供一个快速和成功的低成本传感系统,可以帮助外行用户在家中确定女性生殖能力的峰值时间,而无需提交样品进行昂贵和耗时的实验室测试。
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Ovarian Hormone Estrone Glucuronide (E1G) quantification-impedimetric electrochemical spectroscopy approach
A study was conducted on detection and concentration measurement of estrone glucuronide (E1G), an important metabolite of the ovarian hormone estradiol, by using Electrochemical Impedance Spectroscopy (EIS) technique. A miniature planar Inter-digital (ID) capacitive sensor fabricated on single crystal silicon substrate with sputtered gold electrodes coupled with EIS was used to measure conductivity, permeability and dielectric properties of the said hormone metabolite. A thin film of Silicon Nitride (50 um) was coated on the sensor as passivation layer to avoid Faradic currents through the sensor. Impedance spectrums were obtained with various concentrations of E1G in buffer solution by exposing the samples to electrical perturbations at certain frequency range. Relationship of sample conductance with E1G concentration was studied on basis Randle's equivalent circuit model and results were analyzed to deduce Constant Phase Equivalent (CPE) Circuit model in order to evaluate the double layer capacitance produced at the solution-electrode interface due to kinetic processes taking place in the electrochemical cell. The sensitivity of the sensor was evaluated against concentration. The result analysis confirmed that fabricated ID sensor together with EIS can provide a rapid and successful low cost sensing system which can help a lay user to determine peak time for feminine reproductive fertility at home without submitting samples for an expensive and time consuming laboratory test.
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