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多晶硅纳米缝隙片上实验室实现了单分析物的多重分析。

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

机构信息

Biomedical Nano Diagnostics Research Group, Institute of Nano Electronic Engineering (INEE), Universiti Malaysia Perlis (UniMAP), Kangar, Perlis, Malaysia.

Biomedical Nano Diagnostics Research Group, Institute of Nano Electronic Engineering (INEE), Universiti Malaysia Perlis (UniMAP), Kangar, Perlis, Malaysia; School of Microelectronic Engineering, University Malaysia Perlis (UniMAP), Kuala Perlis, Perlis, Malaysia.

出版信息

Biosens Bioelectron. 2016 Oct 15;84:44-52. doi: 10.1016/j.bios.2015.10.075. Epub 2015 Oct 28.

Abstract

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 polysilicon nanogap (PSNG) lab-on-chip is designed in this study, facilitates multiplex analyses for a single analyte. On the fabricated 69nm 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 0.56mIU/ml and 2.93mIU/ml (at S/N=3), with dissociation constants (Kd) of 5.65±2.5mIU/ml and 7.28±2.6mIU/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.

摘要

为了医学诊断以确定分析物相互作用的水平,需要设计支持多重分析的理性生物传感系统。本研究设计了具有化学功能的新型多电极多晶硅纳米间隙(PSNG)片上实验室,可促进单个分析物的多重分析。在制造的 69nm PSNG 上,通过对人绒毛膜促性腺激素(hCG)的有效结合验证了其生物相容性和结构特性。借助微流控技术,通过单次注射将 hCG 样品递送至 3-氨丙基(三乙氧基)硅烷(APTES)和缩水甘油氧基丙基(三甲氧基)硅烷(GPMS)修饰的 PSNG 电极,然后将转换信号用于研究用于多重分析的介电机制。安培响应和阻抗测量的结果提供了抗 hCG 抗体与 hCG 之间相互作用的规模,与化学连接剂 APTES 相比,GPMS 的灵敏度高 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测限分别为 0.56mIU/ml 和 2.93mIU/ml(S/N=3),解离常数(Kd)分别为 5.65±2.5mIU/ml 和 7.28±2.6mIU/ml。这些结果表明,单个目标的多重分析可以提高检测的准确性,并且可以进行可靠的实时比较分析。设计的 PSNG 简单、可行,需要的样品消耗低,可应用于任何给定的多重分析。

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