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Continuous optical measurement system of hemolysis during a photosensitization reaction using absorption spectrum

机译:使用吸收光谱的光敏反应过程中溶血的连续光学测量系统

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摘要

To investigate hemolysis phenomena during a photosensitization reaction with the reaction condition continuously and simultaneously for a safety assessment of hemolysis side effect, we constructed an optical system to measure blood sample absorption spectrum during the reaction. Hemolysis degree might be under estimated in general evaluation methods because there is a constant oxygen pressure assumption in spite of oxygen depression take place. By investigating hemoglobin oxidation and oxygen desorption dynamics obtained from the contribution of the visible absorption spectrum and multiple regression analysis, both the hemolysis phenomena and its oxygen environment might be obtained with time. A 664 nm wavelength laser beam for the reaction excitation and 475-650 nm light beam for measuring the absorbance spectrum were arranged perpendicularly crossing. A quartz glass cuvette with 1×10 mm in dimensions for the spectrum measurement was located at this crossing point. A red blood cells suspension medium was arranged with low hematocrit containing 30 μg/ml talaporfin sodium. This medium was irradiated up to 40 J/cm~2. The met-hemoglobin, oxygenated-hemoglobin, and deoxygenated-hemoglobin concentrations were calculated by a multiple regression analysis from the measured spectra. We confirmed the met-hemoglobin concentration increased and oxygen saturation decreased with the irradiation time, which seems to indicate the hemolysis progression and oxygen consumption, respectively. By using our measuring system, the hemolysis progression seems to be obtained with oxygen environment information.
机译:为了连续和同时研究光敏反应在反应条件下的溶血现象,以安全评估溶血副作用,我们构建了光学系统以测量反应过程中的血样吸收光谱。溶血度可能会在一般评估方法中估计不足,因为尽管发生了氧气压低,但假设氧气压力恒定。通过研究由可见吸收光谱的贡献和多重回归分析获得的血红蛋白氧化和氧解吸动力学,可以随时间获得溶血现象及其氧环境。垂直交叉布置用于反应激发的664nm波长的激光束和用于测量吸收光谱的475-650nm的光束。用于该光谱测量的尺寸为1×10 mm的石英玻璃比色杯位于该交叉点。红细胞悬浮培养液中含有低血细胞比容,其中含有30μg/ ml他拉泊芬钠。将该介质辐照至40 J / cm〜2。通过对测量的光谱进行多元回归分析,计算了血红蛋白,氧合血红蛋白和脱氧血红蛋白的浓度。我们证实,随着照射时间的延长,血红蛋白的含量增加,血氧饱和度降低,这似乎分别表明溶血进展和耗氧量。通过使用我们的测量系统,似乎可以通过氧气环境信息获得溶血进展。

著录项

  • 来源
  • 会议地点 San Francisco(US)
  • 作者

    R. Hamada; E. Ogawa; T. Arai;

  • 作者单位

    School of Fundamental Science and Technology, Graduate School of Science and Technology, Keio University, 3-14-1, Hiyoshi, Kohoku-ku, Yokohama City, Kanagawa, 223-8522, Japan;

    School of Fundamental Science and Technology, Graduate School of Science and Technology, Keio University, 3-14-1, Hiyoshi, Kohoku-ku, Yokohama City, Kanagawa, 223-8522, Japan;

    School of Fundamental Science and Technology, Graduate School of Science and Technology, Keio University, 3-14-1, Hiyoshi, Kohoku-ku, Yokohama City, Kanagawa, 223-8522, Japan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photosensitization reaction; Hemolysis; Absorption spectrum; Hemoglobin; Multiple regression analysis;

    机译:光敏反应;溶血;吸收光谱血红蛋白多元回归分析;

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