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A novel approach for electrical tuning of nano-textured zinc oxide surfaces for ultra-sensitive troponin-T detection

机译:用于纳米结构化氧化锌表面电调谐的超灵敏肌钙蛋白-T检测的新方法

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We have developed a label-free, non-faradaic, electrochemical sensor for ultra-sensitive detection of a cardiac biomarker, troponin-T by utilizing the stoichiometric surface compositions of nanotextured zinc oxide (ZnO) thin films. In this study, we show how the performance of a nanotextured zinc oxide based non-faradaic biosensor is modulated by differences in the fabrication parameters of the metal oxide thin film as well as the choice of cross-linkers. Two cross-linking molecules, dithiobis succinimidyl propionate and 3-aminopropyl triethoxysilane, demonstrate significantly different binding chemistries with zinc oxide. The non-faradaic electrochemical behaviour of the sensor due to the two linkers is compared by analyzing the troponin-T dose response using electrochemical impedance spectroscopy (EIS). The sensor performance associated with both linkers is compared based on the dynamic range and limit of detection. The sensor utilizing zinc surface terminations demonstrated a wider dynamic range between the two linkers. This range extended from 26% to 54% in phosphate buffered saline and from 21% to 65% in human serum, for a concentration range from 10 fg mLa?’1 to 1 ng mLa?’1 of troponin-T. The limit of detection was found to be at 10 fg mLa?’1 and has potential utility in the development of point-of-care (POC) diagnostics for cardiovascular diseases. Fluorescence quantification analysis was also performed to further validate the specificity of the linker binding to the ZnO films. An ultrasensitive troponin-T biosensor can be designed by leveraging the zinc termination based surface chemistry for selective protein immobilization.
机译:我们已经开发了一种无标记,非法拉第电化学传感器,可通过利用纳米结构化氧化锌(ZnO)薄膜的化学计量表面成分对心脏生物标志物肌钙蛋白T进行超灵敏检测。在这项研究中,我们显示了如何通过金属氧化物薄膜的制造参数以及交联剂的选择来调节基于纳米纹理的氧化锌基非法拉第生物传感器的性能。两种交联分子,丙二酸双硫代琥珀酰亚胺基酯和3-氨丙基三乙氧基硅烷,表现出与氧化锌的显着不同的结合化学。通过使用电化学阻抗谱(EIS)分析肌钙蛋白-T剂量响应,比较了由于两个接头引起的传感器的非法拉第电化学行为。根据动态范围和检测极限比较与两个连接子相关的传感器性能。利用锌表面终端的传感器在两个连接器之间显示出更宽的动态范围。在肌钙蛋白-T的浓度范围从10 fg mLa?1到1 ng mLa?1时,该范围在磷酸盐缓冲盐水中从26%扩展到54%,在人血清中从21%扩展到65%。发现检出限为10 fg mLa?-1,在开发心血管疾病即时诊断(POC)诊断中具有潜在的实用性。还进行了荧光定量分析,以进一步验证接头与ZnO膜结合的特异性。可以通过利用基于锌末端的表面化学技术进行选择性蛋白质固定来设计超敏肌钙蛋白T生物传感器。

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