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Using a large area CMOS APS for direct chemiluminescence detection in western blotting electrophoresis

机译:在蛋白质印迹电泳中使用大面积CMOS APS直接化学发光检测

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摘要

Western blotting electrophoretic sequencing is an analytical technique widely used in Functional Proteomics to detect, recognize and quantify specific labelled proteins in biological samples. A commonly used label for western blotting is Enhanced ChemiLuminescence (ECL) reagents based on fluorescent light emission of Luminol at 425nm. Film emulsion is the conventional detection medium, but is characterized by non-linear response and limited dynamic range. Several western blotting digital imaging systems have being developed, mainly based on the use of cooled Charge Coupled Devices (CCDs) and single avalanche diodes that address these issues. Even so these systems present key drawbacks, such as a low frame rate and require operation at low temperature. Direct optical detection using Complementary Metal Oxide Semiconductor (CMOS) Active Pixel Sensors (APS) could represent a suitable digital alternative for this application. In this paper the authors demonstrate the viability of direct chemiluminescent light detection in western blotting electrophoresis using a CMOS APS at room temperature. Furthermore, in recent years, improvements in fabrication techniques have made available reliable processes for very large imagers, which can be now scaled up to wafer size, allowing direct contact imaging of full size western blotting samples. We propose using a novel wafer scale APS (12.8 cm�13.2 cm), with an array architecture using two different pixel geometries that can deliver an inherently low noise and high dynamic range image at the same time representing a dramatic improvement with respect to the current western blotting imaging systems. © 2012 SPIE.
机译:Western blotting电泳测序是一种在功能蛋白质组学中广泛使用的分析技术,用于检测,识别和定量生物样品中的特定标记蛋白。蛋白质印迹的常用标签是增强型化学发光(ECL)试剂,该试剂基于Luminol在425nm处的荧光发射。薄膜乳液是常规的检测介质,但具有非线性响应和有限的动态范围的特点。已经开发了几种西方印迹数字成像系统,主要基于使用冷却电荷耦合器件(CCD)和解决这些问题的单雪崩二极管。即使这样,这些系统仍存在关键缺陷,例如低帧速率,并且需要在低温下运行。使用互补金属氧化物半导体(CMOS)有源像素传感器(APS)的直接光学检测可能代表该应用的合适数字替代方案。在本文中,作者证明了在室温下使用CMOS APS在化学印迹电泳中直接化学发光检测的可行性。此外,近年来,制造技术的改进为超大型成像仪提供了可靠的工艺,现在可以将其放大至晶圆尺寸,从而可以对全尺寸的蛋白质印迹样品进行直接接触成像。我们建议使用新颖的晶圆级APS(12.8 cm×13.2 cm),以及使用两种不同像素几何形状的阵列架构,这些阵列可以同时提供固有的低噪声和高动态范围图像,相对于当前而言有了显着改善免疫印迹成像系统。 ©2012 SPIE。

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