Kawabata Tomohisa, Wada Henry G, Watanabe Mitsuo, Satomura Shinji
New Diagnostics Business and Technology Development Department, Wako Pure Chemical Industries, Mountain View R&D Center, Mountain View, CA, USA.
Electrophoresis. 2008 Apr;29(7):1399-406. doi: 10.1002/elps.200700898.
A rapid and highly sensitive CE immunoassay method integrating mixing, reaction, separation, and detection on-chip is described for the measurement of alpha-fetoprotein (AFP), a liver cancer marker in blood. Antibody-binding reagents, consisting of 245-bp DNA coupled anti-AFP WA1 antibody (DNA-WA1) and HiLyte dye-labeled anti-AFP WA2 antibody (HiLyte-WA2), and AFP-containing sample were filled into adjacent zones of a chip channel defined by the laminar flow lines of the microfluidic device using pressure-driven flow. The channel geometry was thus used to quantitatively aliquot the reagents and sample into the chip. DNA-WA1 was electrokinetically concentrated in the channel and sequentially transported through the AFP-sample zone and HiLyte-WA2 zone by ITP in such a manner that the AFP sandwich immune complex formation took place in the sample and HiLyte-WA2 zones. The sandwich AFP immune complex was then detected by LIF after CGE in a separation channel that was arranged downstream of the reaction channel. AFP was detected within 136 s with a detection sensitivity of 5 pM. The on-chip immunoassay described here, applying ITP concentration, in-channel reaction, and CGE separation, has the potential of providing a rapid and sensitive method for both clinical and research applications.
本文描述了一种用于测量血液中肝癌标志物甲胎蛋白(AFP)的快速且高度灵敏的毛细管电泳免疫分析方法,该方法可在芯片上集成混合、反应、分离和检测功能。由245bp DNA偶联抗AFP WA1抗体(DNA-WA1)和HiLyte染料标记抗AFP WA2抗体(HiLyte-WA2)组成的抗体结合试剂,以及含AFP的样品,利用压力驱动流填充到由微流控装置层流管线定义的芯片通道相邻区域。通道几何结构因此用于将试剂和样品定量分装到芯片中。DNA-WA1在通道中通过等速电泳进行电动浓缩,并通过等速电泳依次穿过AFP样品区和HiLyte-WA2区,使得AFP夹心免疫复合物在样品区和HiLyte-WA2区形成。然后,在反应通道下游布置的分离通道中进行毛细管凝胶电泳后,通过激光诱导荧光检测夹心AFP免疫复合物。在136秒内检测到AFP,检测灵敏度为5 pM。本文所述的芯片免疫分析方法,应用等速电泳浓缩、通道内反应和毛细管凝胶电泳分离,有可能为临床和研究应用提供一种快速且灵敏的方法。