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Engineering of PDMS Surfaces for use in Microsystems for Capture and Isolation of Complex and Biomedically Important Proteins: Epidermal Growth Factor Receptor as a Model System

机译:在微系统中用于捕获和分离复杂和生物医学重要蛋白质的PDMS表面工程:表皮生长因子受体作为模型系统

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摘要

Elastomers based on poly(dimethylsiloxane) (PDMS) are promising materials for fabrication of a wide range of microanalytical systems due to their mechanical and optical properties and ease of processing. To date, however, quantitative studies that demonstrate reliable and reproducible methods for attachment of binding groups that capture complex receptor proteins of relevance to biomedical applications of PDMS microsystems have not been reported. Herein we describe methods that lead to the reproducible capture of a transmembrane protein, the human epidermal growth factor (EGF) receptor, onto PDMS surfaces presenting covalently immobilized antibodies for EGF receptor, and subsequent isolation of the captured receptor by mechanical transfer of the receptor onto a chemically functionalized surface of a gold film for detection. This result is particularly significant because the physical properties of transmembrane proteins make this class of proteins a difficult one to analyze. We benchmark the performance of antibodies to the human EGF receptor covalently immobilized on PDMS against the performance of the same antibodies physisorbed to conventional surfaces utilized in ELISA assays through the use of EGF receptor that was 32P-radiolabeled in its autophosphorylation domain. These results reveal that two pan-reactive antibodies for the EGF receptor (H11 and 111.6) and one phosphospecific EGF receptor antibody (pY1068) capture the receptor on both PDMS and ELISA plates. When using H11 antibody to capture EGF receptor and subsequent treatment with a stripping buffer (NaOH and sodium dodecylsulfate) to isolate the receptor, the signal-to-background obtained using the PDMS surface was 82:1, exceeding the signal-to-background measured on the ELISA plate (<48:1). We also characterized the isolation of captured EGF receptor by mechanical contact of the PDMS surface with a chemically functionalized gold film. The efficiency of mechanical transfer of the transmembrane protein from the PDMS surface was found to be 75–81%. However, the transfer of non-specifically bound protein was substantially less than 75%, thus leading to the important finding that mechanical transfer of the EGF receptor leads to an approximately four-fold increase in signal-to-background from 20:1 to 88:1. The signal-to-background obtained following mechanical transfer is also better than that obtained using ELISA plates and stripping buffer (<48:1). The EGF receptor is a clinically important protein and the target of numerous anticancer agents and thus these results, when combined, provide guidance for the design of PDMS-based microanalytical systems for the capture and isolation of complex and clinically important transmembrane proteins.
机译:基于聚(二甲基硅氧烷)(PDMS)的弹性体由于其机械和光学性能以及易于加工而成为制造各种微量分析系统的有前途的材料。然而,迄今为止,尚未报道定量研究,其证明了可靠和可再现的方法用于结合结合基团,该结合基团捕获与PDMS微系统的生物医学应用有关的复杂受体蛋白。在本文中,我们描述了导致可重复捕获跨膜蛋白,人类表皮生长因子(EGF)受体到PDMS表面的方法,该方法呈现共价固定的EGF受体抗体,并随后通过将受体机械转移到捕获的受体进行分离用于检测的金膜的化学功能化表面。该结果特别重要,因为跨膜蛋白的物理特性使这一类蛋白质难以分析。我们通过共价固定在PDMS上的人类EGF受体的抗体的性能,与通过使用 32 P-radiolabeled的EGF受体而被物理吸附到ELISA分析中的常规表面的相同抗体的性能进行比较它的自磷酸化结构域。这些结果表明,两种针对EGF受体的泛反应性抗体(H11和111.6)和一种磷酸特异性EGF受体抗体(pY1068)在PDMS和ELISA板上均捕获了该受体。当使用H11抗体捕获EGF受体并随后用剥离缓冲液(NaOH和十二烷基硫酸钠)处理以分离受体时,使用PDMS表面获得的信噪比为82:1,超过了测得的信噪比在ELISA板上(<48:1)。我们还通过PDMS表面与化学功能化的金膜的机械接触来表征捕获的EGF受体的分离。从PDMS表面机械转移跨膜蛋白的效率为75-81%。然而,非特异性结合蛋白的转移率基本上低于75%,因此导致了一个重要发现,即EGF受体的机械转移导致背景信号从20:1到88的大约四倍增长。 :1。机械转移后获得的背景信号也比使用ELISA板和剥离缓冲液(<48:1)获得的更好。 EGF受体是临床上重要的蛋白质,并且是众多抗癌药物的靶标,因此,这些结果结合使用时,可为基于PDMS的微分析系统的设计提供指导,以捕获和分离复杂且临床上重要的跨膜蛋白质。

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