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SERS-based immunoassay using a gold array-embedded gradient microfluidic chip

机译:使用嵌入金阵列的梯度微流控芯片进行基于SERS的免疫测定

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摘要

Here we report the development of a programmable and fully automatic gold array-embedded gradient microfluidic chip that integrates a gradient microfluidic device with gold-patterned microarray wells. This device provides a convenient and reproducible surface-enhanced Raman scattering (SERS)-based immunoassay platform for cancer biomarkers. We used hollow gold nanospheres (HGNs) as SERS agents because of their highly sensitive and reproducible characteristics. The utility of this platform was demonstrated by the quantitative immunoassay of alpha-fetoprotein (AFP) model protein marker. Our proposed SERS-based immunoassay platform has many advantages over other previously reported SERS immunoassay methods. The tedious manual dilution process of repetitive pipetting and inaccurate dilution is eliminated with this process because various concentrations of biomarker are automatically generated by microfluidic gradient generators with N cascade-mixing stages. The total assay time from serial dilution to SERS detection takes less than 60 min because all of the experimental conditions for the formation and detection of immunocomplexes can be automatically controlled inside the exquisitely designed microfluidic channel. Thus, this novel SERS-based microfluidic assay technique is expected to be a powerful clinical tool for fast and sensitive cancer marker detection.
机译:在这里,我们报告了将梯度微流体装置与金样微阵列孔整合在一起的可编程和全自动金纳米管嵌入式梯度微流体芯片的开发。该设备为癌症生物标志物提供了一种方便且可重现的基于表面增强拉曼散射(SERS)的免疫测定平台。我们使用空心金纳米球(HGN)作为SERS试剂,因为它们具有高度灵敏和可复制的特性。该平台的实用性通过甲胎蛋白(AFP)模型蛋白标记物的定量免疫测定法得到证明。我们提出的基于SERS的免疫测定平台比其他先前报道的SERS免疫测定方法具有许多优势。由于具有N级联混合阶段的微流梯度发生器会自动生成各种浓度的生物标志物,因此消除了重复移液和繁琐的手动稀释过程。从连续稀释到SERS检测的总检测时间少于60分钟,因为可以在精美设计的微流控通道内自动控制用于形成和检测免疫复合物的所有实验条件。因此,这种新颖的基于SERS的微流控分析技术有望成为快速,敏感的癌症标志物检测的强大临床工具。

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