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具有16孔样品容量的用于微波加速生物测定的圆形聚甲基丙烯酸甲酯平台的设计与概念验证应用

Design and Proof-of-Concept Use of a Circular PMMA Platform with 16-Well Sample Capacity for Microwave-Accelerated Bioassays.

作者信息

Mohammed Muzaffer, Aslan Kadir

机构信息

Morgan State University, Department of Chemistry, Baltimore, Maryland 21251.

出版信息

Nano Biomed Eng. 2013 Jan 1;5(1):10-19. doi: 10.5101/nbe.v5i1.p20-27.

Abstract

We demonstrate the design and the use of a new, circular poly(methyl methacrylate)-based bioassay platform (PMMA platform), which affords for the rapid processing of 16 samples at once. The circular PMMA platform (5 cm in diameter) was coated with a silver nanoparticle film to accelerate the bioassay steps by microwave heating. A model colorimetric bioassay for biotinylated albumin (using streptavidin-labeled horse radish peroxidase) was performed on the PMMA platform coated with and without silver nanoparticles (a control experiment), and at room temperature and using microwave heating. It was shown that the simulated temperature profile of the PMMA platform during microwave heating were comparable to the real-time temperature profile during actual microwave heating of the constructed PMMA platform in a commercial microwave oven. The model colorimetric bioassay for biotinylated albumin was successfully completed in ~2 min (total assay time) using microwave heating, as compared to 90 min at room temperature (total assay time), which indicates a ~45-fold decrease in assay time. Our PMMA platform design afforded for significant reduction in non-specific interactions and low background signal as compared to non-silvered PMMA surfaces when employed in a microwave-accelerated bioassay carried out in a conventional microwave cavity.

摘要

我们展示了一种新型的、基于聚甲基丙烯酸甲酯的圆形生物测定平台(PMMA平台)的设计与应用,该平台能够同时快速处理16个样品。圆形PMMA平台(直径5厘米)涂有银纳米颗粒薄膜,以通过微波加热加速生物测定步骤。在涂有和未涂有银纳米颗粒的PMMA平台上(对照实验),在室温下并使用微波加热,对生物素化白蛋白进行了比色生物测定模型(使用链霉亲和素标记的辣根过氧化物酶)。结果表明,PMMA平台在微波加热过程中的模拟温度曲线与在商用微波炉中实际微波加热构建的PMMA平台时的实时温度曲线相当。使用微波加热时,生物素化白蛋白的比色生物测定模型在约2分钟内(总测定时间)成功完成,而在室温下则需要90分钟(总测定时间),这表明测定时间减少了约45倍。与在传统微波腔中进行的微波加速生物测定中使用的未镀银PMMA表面相比,我们的PMMA平台设计显著减少了非特异性相互作用并降低了背景信号。

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