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Polysilicon nanogap lab-on-chip facilitates multiplex analyses with single analyte

机译:多晶硅纳米间隙片上实验室有助于单一分析物的多重分析

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Rationally designed biosensing system supports multiplex analyses is warranted for medical diagnosis to determine the level of analyte interaction. The chemically functionalized novel multi-electrode poly silicon nanogap (PSNG) lab-on-chip is designed in this study, facilitates multiplex analyses for a single analyte. On the fabricated 69 nm PSNG, biocompatibility and structural characteristics were verified for the efficient binding of Human Chorionic Gonadotropin (hCG). With the assistance of microfluidics, hCG sample was delivered via single-injection to 3-Aminopropyl(triethoxy)silane (APTES) and Glycidoxypropyl(trimethoxy)silane (GPMS) modified PSNG electrodes and the transduced signal was used to investigate the dielectric mechanisms for multiplex analyses. The results from amperometric response and impedance measurement delivered the scale of interaction between anti-hCG antibody and hCG that exhibited 6.5 times higher sensitivity for the chemical linker, APTES than GPMS. Under optimized experimental conditions, APTES and GPMS modified immunosensor has a limit of detection as 0.56 mIU/ml and 2.93 mIU/ml (at S/N=3), with dissociation constants (K-d) of 5.65 +/- 2.5 mIU/ml and 7.28 +/- 2.6 mIU/ml, respectively. These results suggest that multiplex analysis of single target could enhance the accuracy of detection and reliable for real-time comparative analyses. The designed PSNG is simple, feasible, requires low sample consumption and could be applied for any given multiplex analyses. (C) 2015 Elsevier B.V. All rights reserved.
机译:合理设计的生物传感系统支持多重分析,可用于医学诊断以确定分析物相互作用的水平。在这项研究中设计了化学功能化的新型多电极多晶硅纳米间隙(PSNG)芯片实验室,有助于对单一分析物进行多重分析。在制造的69 nm PSNG上,验证了人类绒毛膜促性腺激素(hCG)的有效结合的生物相容性和结构特征。在微流控技术的帮助下,通过单次注射将hCG样品递送至3-氨基丙基(三乙氧基)硅烷(APTES)和乙二氧基丙基(三甲氧基)硅烷(GPMS)修饰的PSNG电极,并利用转导的信号研究多重电介质分析。安培响应和阻抗测量的结果表明,抗hCG抗体与hCG之间的相互作用程度达到了对化学接头APTES的敏感性比GPMS高6.5倍。在优化的实验条件下,APTES和GPMS修饰的免疫传感器的检出限为0.56 mIU / ml和2.93 mIU / ml(在S / N = 3时),解离常数(Kd)为5.65 +/- 2.5 mIU / ml,分别为7.28 +/- 2.6mIU / ml。这些结果表明,对单个目标的多重分析可以提高检测的准确性,并且对于实时比较分析是可靠的。设计的PSNG简单,可行,要求的样品消耗低,并可用于任何给定的多重分析。 (C)2015 Elsevier B.V.保留所有权利。

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