Peoples Michael C, Karnes H Thomas
Department of Pharmaceutics, Virginia Commonwealth University Medical Center, Richmond, VA 23298-0533, USA.
J Chromatogr B Analyt Technol Biomed Life Sci. 2008 Apr 15;866(1-2):14-25. doi: 10.1016/j.jchromb.2007.08.030. Epub 2007 Aug 30.
Microfluidic devices often rely on antibody-antigen interactions as a means of separating analytes of interest from sample matrices. Immunoassays and immunoaffinity separations performed in miniaturized formats offer selective target isolation with minimal reagent consumption and reduced analysis times. The introduction of biological fluids and other complicated matrices often requires sample pretreatment or system modifications for compatibility with small-scale devices. Miniaturization of external equipment facilitates the potential for portable use such as in patient point-of-care settings. Microfluidic immunoaffinity systems including capillary and chip platforms have been assembled from basic instrument components for fluid control, sample introduction, and detection. The current review focuses on the use of immunoaffinity separations in microfluidic devices with an emphasis on pump-based flow and biological sample analysis.
微流控设备通常依靠抗体 - 抗原相互作用,作为从样品基质中分离目标分析物的一种手段。以小型化形式进行的免疫测定和免疫亲和分离能够以最少的试剂消耗和缩短的分析时间实现选择性目标分离。引入生物流体和其他复杂基质通常需要进行样品预处理或系统改造,以使其与小型设备兼容。外部设备的小型化有利于实现便携式应用,例如在患者床边护理环境中。包括毛细管和芯片平台在内的微流控免疫亲和系统已由用于流体控制、样品引入和检测的基本仪器组件组装而成。本综述重点关注微流控设备中免疫亲和分离的应用,尤其侧重于基于泵的流动和生物样品分析。