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用于天然蛋白质分析的原位免疫印迹微流控聚丙烯酰胺凝胶电泳

Microfluidic polyacrylamide gel electrophoresis with in situ immunoblotting for native protein analysis.

作者信息

He Mei, Herr Amy E

机构信息

Department of Bioengineering, University of California, Berkeley, California 94720, USA.

出版信息

Anal Chem. 2009 Oct 1;81(19):8177-84. doi: 10.1021/ac901392u.

Abstract

We introduce an automated immunoblotting method that reports protein electrophoretic mobility and identity in a single streamlined microfluidic assay. Native polyacrylamide gel electrophoresis (PAGE) was integrated with subsequent in situ immunoblotting. Integration of three PA gel elements into a glass microfluidic chip achieved multiple functions, including (1) rapid protein separation via on-chip PAGE, (2) directed electrophoretic transfer of resolved protein peaks to an in-line blotting membrane, and (3) high-efficiency identification of the transferred proteins using antibody-functionalized blotting membranes. In-chip blotting membranes were photopatterned with biotinylated antibody using streptavidin polyacrylamide (PA) thus yielding postseparation sample analysis. No pressure driven flow or fluid valving was required, as the assay was operated by electrokinetically programmed control. A model sample of fluorescently labeled BSA (negative control), alpha-actinin, and prostate specific antigen (PSA) was selected to develop and characterize the assay. A 5 min assay time was required without operator intervention. Optimization of the blotting membrane (geometry, operation, and composition) yielded a detection limit of approximately 0.05 pg (alpha-actinin peak). An important additional blotting fabrication strategy was developed and characterized to allow vanishingly small antibody consumption (approximately 1 microg), as well as end-user customization of the blotting membrane after device fabrication and storage. This first report of rapid on-chip protein PAGE integrated with in situ immunoblotting forms the basis for a sensitive, automated approach applicable to numerous forms of immunoblotting.

摘要

我们介绍了一种自动化免疫印迹方法,该方法可在单一简化的微流控分析中报告蛋白质的电泳迁移率和身份。将天然聚丙烯酰胺凝胶电泳(PAGE)与后续的原位免疫印迹相结合。将三个PA凝胶元件集成到玻璃微流控芯片中实现了多种功能,包括:(1)通过芯片上的PAGE快速分离蛋白质;(2)将分离的蛋白质峰定向电泳转移到在线印迹膜上;(3)使用抗体功能化的印迹膜高效鉴定转移的蛋白质。使用链霉亲和素聚丙烯酰胺(PA)对芯片上的印迹膜进行生物素化抗体光图案化,从而实现分离后样品分析。由于该分析通过电动程序控制进行操作,因此无需压力驱动流或流体阀。选择荧光标记的牛血清白蛋白(阴性对照)、α-辅肌动蛋白和前列腺特异性抗原(PSA)的模型样品来开发和表征该分析方法。无需操作员干预,分析时间为5分钟。对印迹膜(几何形状、操作和组成)进行优化后,检测限约为0.05 pg(α-辅肌动蛋白峰)。开发并表征了一种重要的额外印迹制备策略,以实现极少的抗体消耗(约1微克),以及在设备制造和储存后最终用户对印迹膜的定制。这篇关于快速芯片上蛋白质PAGE与原位免疫印迹相结合的首次报告,为适用于多种形式免疫印迹的灵敏、自动化方法奠定了基础。

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