Department of Bioengineering, University of Washington, Box 355061, Seattle, WA 98195, USA.
Biosens Bioelectron. 2013 Apr 15;42:100-5. doi: 10.1016/j.bios.2012.10.079. Epub 2012 Nov 2.
A widely acknowledged goal in personalized medicine is to radically reduce the costs of highly parallelized, small fluid volume, point-of-care and home-based diagnostics. Recently, there has been a surge of interest in using complementary metal-oxide-semiconductor (CMOS)-compatible silicon photonic circuits for biosensing, with the promise of producing chip-scale integrated devices containing thousands of orthogonal sensors, at minimal cost on a per-chip basis. A central challenge in biosensor translation is to engineer devices that are both sensitive and specific to a target analyte within unprocessed biological fluids. Despite advances in the sensitivity of silicon photonic biosensors, poor biological specificity at the sensor surface remains a significant factor limiting assay performance in complex media (i.e. whole blood, plasma, serum) due to the non-specific adsorption of proteins and other biomolecules. Here, we chemically modify the surface of silicon microring resonator biosensors for the label-free detection of an analyte in undiluted human plasma. This work highlights the first application of a non-fouling zwitterionic surface coating to enable silicon photonic-based label-free detection of a protein analyte at clinically relevant sensitivities in undiluted human plasma.
在个性化医疗中,一个被广泛认可的目标是从根本上降低高通量、小体积流体、即时诊断和家庭诊断的成本。最近,人们对使用互补金属氧化物半导体(CMOS)兼容的硅光子电路进行生物传感产生了浓厚的兴趣,有望在最小的每片成本基础上,生产出包含数千个正交传感器的芯片级集成设备。生物传感器转化的一个核心挑战是设计出既能在未处理的生物流体中对目标分析物具有敏感性又具有特异性的器件。尽管硅光子生物传感器的灵敏度有所提高,但由于蛋白质和其他生物分子的非特异性吸附,传感器表面的生物特异性差仍然是限制复杂介质(如全血、血浆、血清)中分析性能的一个重要因素。在这里,我们对硅微环谐振器生物传感器的表面进行化学修饰,用于在未稀释的人血浆中对分析物进行无标记检测。这项工作首次应用了一种抗污性两性离子表面涂层,能够在未稀释的人血浆中以临床相关的灵敏度进行基于硅光子的无标记蛋白质分析物检测。