Department of Chemistry, University of Illinois at Urbana-Champaign , 600 S. Matthews Ave., Urbana, IL 61801, United States.
Anal Chem. 2013 Nov 19;85(22):10653-7. doi: 10.1021/ac402972d. Epub 2013 Nov 4.
The detection of biomolecules at ultralow (low to subpicogram per milliliter) concentrations and within complex, clinically relevant matrices is a formidable challenge that is complicated by limitations imposed by the Langmuir binding isotherm and mass transport, for surface-based affinity biosensors. Here we report the integration of an enzymatic signal enhancement scheme onto a multiplexable silicon photonic microring resonator detection platform. To demonstrate the analytical value of this combination, we simultaneously quantitated levels of the interleukins IL-2, IL-6, and IL-8 in undiluted cerebrospinal fluid in an assay format that is multiplexable, relatively rapid (90 min), and features a 3 order of magnitude dynamic range and a limit of detection ≤1 pg/mL. The modular nature of this assay and technology should lend itself broadly amenable to different analyte classes, making it a versatile tool for biomarker analysis in clinically relevant settings.
在复杂的临床相关基质中,以毫微微克/毫升(低至亚皮克/毫升)的超低浓度检测生物分子是一项艰巨的挑战,这一挑战因基于表面的亲和生物传感器的朗缪尔结合等温线和质量传输限制而变得复杂。在这里,我们报告了将酶促信号增强方案集成到可多路复用的硅光子微环谐振器检测平台上。为了证明这种组合的分析价值,我们以可多路复用、相对快速(90 分钟)的检测格式,同时定量检测未稀释的脑脊液中白细胞介素 IL-2、IL-6 和 IL-8 的水平,其动态范围为 3 个数量级,检测限≤1pg/mL。该测定法和技术的模块化性质应该广泛适用于不同的分析物类别,使其成为临床相关环境中生物标志物分析的多功能工具。