首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Application of hydrogel prepared from ferrocene functionalized amino acid in the design of novel electrochemical immunosensing platform
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Application of hydrogel prepared from ferrocene functionalized amino acid in the design of novel electrochemical immunosensing platform

机译:二茂铁官能化氨基酸制备的水凝胶在新型电化学免疫传感平台设计中的应用

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摘要

A simple and novel supramolecular hydrogel was prepared from ferrocene (Fc) modified amino acid phenylalanine (F) and utilized as electrochemical immunosensing platform for the detection of human IgG. Scanning electron microscopy (SEM) characterization indicated that the hydrogel is composed of fibrils with diameter around 50-100nm and length extend to 1mm. When the prepared hydrogel was reacted with H_2O_2, the Fc moieties on the amino acid was oxidized, leading to the disruption of the hydrogel structure and the decrease of its redox signal, which was characterized in detail by SEM and the electrochemical method. Regarding the redox current decrease upon the reaction of the hydrogel with H_2O_2, the hydrogel modified electrode was utilized as immunosensing interface. After the construction of the immunosensor based on the traditional sandwich protocol with glucose oxidase (GOx) functionalized carbon nanotube (CNT) as detection antibody label, the GOx attached onto electrode surface would catalyze glucose reaction to produce H_2O_2 and cause the decrease of redox current of the electrode. The current change is proportional to the concentration of IgG detected in the range from 0.1 to 100pg/mL. The high sensitivity, wide linear range and good reproducibility of the immunosensor indicate this immunosensing platform can be easily extended to the detection of other protein biomarkers.
机译:一种简单而新颖的超分子水凝胶是由二茂铁(Fc)修饰的氨基酸苯丙氨酸(F)制备的,并用作检测人体IgG的电化学免疫传感平台。扫描电子显微镜(SEM)表征表明水凝胶由直径约50-100nm,长度延伸至1mm的原纤维组成。当制备的水凝胶与H_2O_2反应时,氨基酸上的Fc部分被氧化,导致水凝胶结构的破坏和氧化还原信号的降低,这通过SEM和电化学方法进行了详细描述。关于水凝胶与H_2O_2反应时氧化还原电流的降低,将水凝胶修饰的电极作为免疫传感界面。构建了以葡萄糖氧化酶(GOx)功能化的碳纳米管(CNT)为检测抗体标记的传统夹心方案的免疫传感器后,附着在电极表面的GOx会催化葡萄糖反应产生H_2O_2并导致氧化还原电流的降低。电极。电流变化与检测到的IgG浓度成正比,范围从0.1到100pg / mL。免疫传感器的高灵敏度,宽线性范围和良好的重现性表明,该免疫传感平台可以轻松扩展至其他蛋白质生物标记物的检测。

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