基于智能手机的分子诊断

J. P. Devadhasan, M. Marimuthu, Sanghyo Kim
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引用次数: 0

摘要

这项研究显示了互补金属氧化物半导体(CMOS)图像传感器和铟纳米颗粒(InNP)底物用于检测抗原-抗体相互作用的有价值的影响。抗原抗体的介电层结合在导电金属表面,有利于电磁辐射的散射。干扰素γ、c反应蛋白和肌钙蛋白I等不同类型的抗原被吸附在InNP底物上,并与特异性抗体相互作用。抗原抗体检测是基于CMOS图像传感器观察到的蛋白结合前后的光子计数,在模数转换器(ADC)的帮助下转换成数字形式。分析了不同厚度的InNP底物的抗原-抗体相互作用。当随后的蛋白质层吸附在底物上时,光子计数逐渐减少。该光子数与用于检测抗原-抗体相互作用的CMOS传感器观察到的数字数成正比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular diagnostics based on smart phone
This study shows a valuable impact of the complementary metal oxide semi conductor (CMOS) image sensor and indium nanoparticle (InNP) substrates used for the detection of antigen-antibody interactions. Dielectric layer of antigen-antibodies bind on the conducting metal surface, which is helpful for the scattering of electro magnetic radiation. Different types of antigens such as Interferon Gamma, C-reactive protein and Troponin I were adsorbed on the InNP substrate and interact with specific antibodies. The antigen-antibody detection was based on the photon count measurements before and after protein binding observed by CMOS image sensor, which is converted into digital form with the help of analog to digital converter (ADC). Various thickness of InNP substrates were analyzed for antigen-antibody interaction. The photon counts gradually decrease when subsequent protein layers adsorbed on the substrates. This photon number is directly proportional to the digital number observed with the CMOS sensor for detecting antigen-antibody interactions.
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