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使用光图案化交联聚丙烯酰胺凝胶对微芯片中的蛋白质进行集成预浓缩十二烷基硫酸钠-聚丙烯酰胺凝胶电泳

Integrated preconcentration SDS-PAGE of proteins in microchips using photopatterned cross-linked polyacrylamide gels.

作者信息

Hatch Anson V, Herr Amy E, Throckmorton Daniel J, Brennan James S, Singh Anup K

机构信息

Biosystems Research Department, Sandia National Laboratories, Livermore, California 94551, USA.

出版信息

Anal Chem. 2006 Jul 15;78(14):4976-84. doi: 10.1021/ac0600454.

Abstract

The potential of integration of functions in microfluidic chips is demonstrated by implementing on-chip preconcentration of proteins prior to on-chip protein sizing by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). Two polymeric elements-a thin (approximately 50 microm) size exclusion membrane for preconcentration and a longer (approximately cm) porous monolith for protein sizing-were fabricated in situ using photopolymerization. Contiguous placement of the two polymeric elements in the channels of a microchip enabled simple and zero dead volume integration of the preconcentration with SDS-PAGE. The size exclusion membrane was polymerized in the injection channel using a shaped laser beam, and the sizing monolith was cast by photolithography using a mask and UV lamp. Proteins injected electrophoretically were trapped on the upstream side of the size exclusion membrane (MW cutoff approximately 10 kDa) and eluted off the membrane by reversing the electric field. Subsequently, the concentrated proteins were separated in a cross-linked polyacrylamide monolith that was patterned contiguous to the size exclusion membrane. The extent of protein preconcentration is easily tuned by varying the voltage during injection or by controlling the sample volume loaded. Electric fields applied across the nanoporous membrane resulted in a concentration polarization effect evidenced by decreasing current over time and irreproducible migration of proteins during sizing. To minimize the concentration polarization effect, sieving gels were polymerized only on the separation side of the membrane, and an alternate electrical current path was employed, bypassing the membrane, for most of the elution and separation steps. Electrophoretically sweeping a fixed sample volume against the membrane yields preconcentration factors that are independent of protein mobility. The volume sweeping method also avoids biased protein loading from concentration polarization and sample matrix variations. Mobilities of the concentrated proteins were log-linear with respect to molecular weight, demonstrating the suitability of this approach for protein sizing. Proteins were concentrated rapidly (<5 min) over 1000-fold followed by high-resolution separation in the sieving monolith. Proteins with concentrations as low as 50 fM were detectable with 30 min of preconcentration time. The integrated preconcentration-sizing approach facilitates analysis of low-abundant proteins that cannot be otherwise detected. Moreover, the integrated preconcentration-analysis approach employing in situ formation of photopatterned polymeric elements provides a generic, inexpensive, and versatile method to integrate functions at chip level and can be extended to lowering of detection limits for other applications such as DNA analysis and clinical diagnostics.

摘要

通过在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)进行芯片上蛋白质大小测定之前,在芯片上实现蛋白质预浓缩,展示了微流控芯片中功能整合的潜力。利用光聚合原位制备了两个聚合物元件——一个用于预浓缩的薄(约50微米)尺寸排阻膜和一个用于蛋白质大小测定的较长(约厘米)多孔整体柱。将这两个聚合物元件相邻放置在微芯片的通道中,实现了预浓缩与SDS-PAGE的简单且零死体积整合。尺寸排阻膜在注入通道中使用成形激光束聚合,大小测定整体柱通过使用掩膜和紫外灯的光刻法浇铸。通过电泳注入的蛋白质被困在尺寸排阻膜(分子量截留值约10 kDa)的上游侧,并通过反转电场从膜上洗脱下来。随后,浓缩的蛋白质在与尺寸排阻膜相邻图案化的交联聚丙烯酰胺整体柱中进行分离。通过改变注入过程中的电压或控制加载的样品体积,可以轻松调节蛋白质预浓缩的程度。施加在纳米多孔膜上的电场导致浓度极化效应,表现为随着时间电流降低以及在大小测定过程中蛋白质迁移的不可重复性。为了最小化浓度极化效应,筛分凝胶仅在膜的分离侧聚合,并且在大多数洗脱和分离步骤中采用绕过膜的交替电流路径。电泳将固定体积的样品扫向膜产生的预浓缩因子与蛋白质迁移率无关。体积扫掠方法还避免了由于浓度极化和样品基质变化导致的蛋白质加载偏差。浓缩蛋白质的迁移率与分子量呈对数线性关系,证明了该方法适用于蛋白质大小测定。蛋白质在不到5分钟的时间内快速浓缩超过1000倍,随后在筛分整体柱中进行高分辨率分离。预浓缩30分钟可检测到低至50 fM浓度的蛋白质。这种集成的预浓缩-大小测定方法有助于分析否则无法检测到的低丰度蛋白质。此外,采用光图案化聚合物元件原位形成的集成预浓缩-分析方法提供了一种通用、廉价且多功能的方法,可在芯片层面整合功能,并且可以扩展到降低其他应用(如DNA分析和临床诊断)的检测限。

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