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首页> 外文期刊>Optics and Lasers in Engineering >Handheld device for fast and non-contact optical measurement of protein films on surfaces
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Handheld device for fast and non-contact optical measurement of protein films on surfaces

机译:手持式设备,用于对表面蛋白质膜进行快速和非接触式光学测量

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摘要

Thin films of bacteria, proteins and other biochemical substances are almost always found on surfaces exposed to the environment. Optical methods enable innovative tools for the study of such films. Res1Dua of proteins exhibit fluorescence when excited in the UV. We present a specially designed handheld measuring device that can detect organic contamination levels down to 100 ng/cm2 with measurement times shorter than a second. Using time-correlated spectroscopy methods the fluorescence detection of contamination levels on surfaces is possible even if the fluorescence spectra of contamination and base material overlap. The results presented in this paper show that a detection of contamination levels of bovine serum albumine (BSA) down to 100 ng/cm2 is possible on non-fluorescent materials. A theoretical analysis shows the possibility to detect BSA levels down to less than 1 ng/cm2 with the presented setup. Future development of handheld optical devices suitable for the detection or analysis of various compounds can be based on these results. A compact formalism is suggested that can be used to calculate the minimal concentration of a given organic contamination that can be detected with a certain measurement setup.
机译:细菌,蛋白质和其他生化物质的薄膜几乎总是在暴露于环境的表面上发现的。光学方法为研究此类薄膜提供了创新的工具。当在紫外线中激发时,蛋白质的Res1Dua会显示荧光。我们提供了一种专门设计的手持式测量设备,该设备可以检测低至100 ng / cm2的有机污染物,测量时间短于一秒钟。使用时间相关光谱法,即使污染物和基础材料的荧光光谱重叠,也可以进行表面污染物水平的荧光检测。本文显示的结果表明,在非荧光材料上检测低至100 ng / cm2的牛血清白蛋白(BSA)污染水平是可行的。理论分析表明,使用提出的设置可以检测到低于1 ng / cm2的BSA水平。基于这些结果,适合于检测或分析各种化合物的手持式光学设备的未来发展可以。建议使用一种紧凑的形式主义,该形式主义可以用来计算可以通过特定测量设置检测到的给定有机污染物的最小浓度。

著录项

  • 来源
    《Optics and Lasers in Engineering》 |2011年第11期|p.1294-1300|共7页
  • 作者单位

    Institute of Optics and Atomic Physics, Berlin Institute of Technology, Sekr. ER 1 -1, Strasse des 17.Juni 135, D-l0623 Berlin, Germany;

    Laser- und Medizin-Technologie Berlin (LMTB), Fabeckstr. 60-62, D-14195 Berlin, Germany;

    Institute of Optics and Atomic Physics, Berlin Institute of Technology, Sekr. ER 1 -1, Strasse des 17.Juni 135, D-l0623 Berlin, Germany;

    Institute of Optics and Atomic Physics, Berlin Institute of Technology, Sekr. ER 1 -1, Strasse des 17.Juni 135, D-l0623 Berlin, Germany;

    Institute of Optics and Atomic Physics, Berlin Institute of Technology, Sekr. ER 1 -1, Strasse des 17.Juni 135, D-l0623 Berlin, Germany;

    Department of Food Biotechnology and Food Process Engineering, Berlin Institute of Technology, Sekr. FC 1, Strasse des 17.]uni 135, D-10623 Berlin, Germany;

    Department of Biomedical Engineering, Berlin Institute of Technology, Sekr. SG 11, Dovestr. 6, D-10587 Berlin, Germany;

    Institute of Optics and Atomic Physics, Berlin Institute of Technology, Sekr. ER 1 -1, Strasse des 17.Juni 135, D-l0623 Berlin, Germany;

    Institute of Optics and Atomic Physics, Berlin Institute of Technology, Sekr. ER 1 -1, Strasse des 17.Juni 135, D-l0623 Berlin, Germany;

    Laser- und Medizin-Technologie Berlin (LMTB), Fabeckstr. 60-62, D-14195 Berlin, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fluorescence quantum yield; proteins; contamination; surfaces; cleaning val1dation;

    机译:荧光量子产率;蛋白质;污染;表面;清洁度;

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