首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >A unique charge-coupled device/xenon arc lamp based imaging system for the accurate detection and quantitation of multicolour fluorescence [Review]
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A unique charge-coupled device/xenon arc lamp based imaging system for the accurate detection and quantitation of multicolour fluorescence [Review]

机译:独特的基于电荷耦合器件/氙弧灯的成像系统,用于准确检测和定量多色荧光[综述]

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In recent years the use of fluorescent dyes in biological applications has dramatically increased. The continual improvement in the capabilities of these fluorescent dyes demands increasingly sensitive detection systems that provide accurate quantitation over a wide linear dynamic range. In the field of proteomics, the detection, quantitation and identification of very low abundance proteins are of extreme importance in understanding cellular processes. Therefore, the instrumentation used to acquire an image of such samples, for spot picking and identification by mass spectrometry, must be sensitive enough to be able, not only to maximise the sensitivity and dynamic range of the staining dyes but, as importantly, adapt to the ever changing portfolio of fluorescent dyes as they become available. Just as the available fluorescent probes are improving and evolving so are the users application requirements. Therefore, the instrumentation chosen must be flexible to address and adapt to those changing needs. As a result, a highly competitive market for the supply and production of such dyes and the instrumentation for their detection and quantitation have emerged. The instrumentation currently available is based on either laser/photomultiplier tube (PMT) scanning or lamp/charge-coupled device (CCD) based mechanisms. This review briefly discusses the advantages and disadvantages of both System types for fluorescence imaging, gives a technical overview of CCD technology and describes in detail a unique xenon/are lamp CCD based instrument, from PerkinElmer Life Sciences. The Wallac-1442 ARTHUR (TM) is unique in its ability to scan both large areas at high resolution and give accurate selectable excitation over the whole of the UV/visible range. It operates by filtering both the excitation and emission wavelengths, providing optimal and accurate measurement and quantitation of virtually any available dye and allows excellent spectral resolution between different fluorophores. This flexibility and excitation accuracy is key to multicolour applications and future adaptation of the instrument to address the application requirements and newly emerging dyes. [References: 21]
机译:近年来,荧光染料在生物应用中的使用已大大增加。这些荧光染料性能的不断提高,要求灵敏度越来越高的检测系统能够在较宽的线性动态范围内提供准确的定量。在蛋白质组学领域,极低丰度蛋白的检测,定量和鉴定对于理解细胞过程极为重要。因此,用于采集此类样品图像以进行质谱点样和鉴定的仪器必须足够灵敏,不仅能够使染色染料的灵敏度和动态范围最大化,而且重要的是要适应荧光染料的不断变化的产品组合。正如可用的荧光探针在不断改进和发展一样,用户的应用需求也在不断提高。因此,所选的仪器必须灵活地解决和适应那些不断变化的需求。结果,出现了用于此类染料的供应和生产以及用于其检测和定量的仪器的竞争激烈的市场。当前可用的仪器基于激光/光电倍增管(PMT)扫描或基于灯/电荷耦合器件(CCD)的机制。这篇综述简要讨论了两种类型的荧光成像系统的优缺点,对CCD技术进行了技术概述,并详细介绍了PerkinElmer Life Sciences公司基于氙气灯的独特CCD仪器。 Wallac-1442 ARTHUR(TM)的独特之处在于能够以高分辨率扫描两个大区域,并在整个UV /可见光范围内提供准确的可选激发。它通过过滤激发和发射波长来进行操作,几乎可以对任何可用的染料进行最佳,准确的测量和定量,并且可以在不同的荧光团之间实现出色的光谱分辨率。这种灵活性和激发精度是实现多色应用以及仪器未来适应应用需求和新兴染料的关键。 [参考:21]

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