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吲哚菁绿的光吸收特性、稳定性及光谱稳定性

Light-absorbing properties, stability, and spectral stabilization of indocyanine green.

作者信息

Landsman M L, Kwant G, Mook G A, Zijlstra W G

出版信息

J Appl Physiol. 1976 Apr;40(4):575-83. doi: 10.1152/jappl.1976.40.4.575.

Abstract

The absorption spectrum of indocyanine green depends on the nature of the solvent medium and on the dye concentration. Binding to plasma proteins causes the principal peaks in the absorption spectrum to shift about 25 nm toward the higher wavelengths. The much greater influence on the spectrum of the dye concentration results from progressive aggregate formation with increasing concentration. Indocyanine green solutions therefore do not follow Lambert-Beer's law above 15 mg-I-1 (in plasma). Indocyanine green solutions in plasma and concentrated (1,000 mg-I-1) solutions in distilled water are stable for at least 4 h. In long-term experiments the optical density of indocyanine green solutions in plasma as well as in distilled water generally diminishes, even in the dark. On the 7th day a new absorption maximum starts to appear at gamma=900 nm, possibly caused by further aggregate formation leading to much larger particles. Spectral stabilization after injection of a concentrated solution into the blood is most rapid when the dye is dissolved in distilled water. Spectral stabilization slows down with decreasing temperature. As rapid spectral stabilization is essential in quantitative dye dilution studies, the practice of adding a albumin and/or isotonic saline solution to the injectate should be discontinued. When a 10 g-1(-1) aqueous solution of indocyanine green is used, spectral stabilization takes less than 1.5 a (at 37 degrees C), which is sufficiently fast for almost any application.

摘要

吲哚菁绿的吸收光谱取决于溶剂介质的性质和染料浓度。与血浆蛋白结合会使吸收光谱中的主峰向更高波长方向移动约25nm。随着浓度增加,逐渐形成聚集体,这对染料浓度的光谱影响更大。因此,吲哚菁绿溶液在血浆中浓度高于15mg·L⁻¹时不遵循朗伯-比尔定律。血浆中的吲哚菁绿溶液和蒸馏水中的浓缩(1000mg·L⁻¹)溶液至少稳定4小时。在长期实验中,即使在黑暗中,血浆和蒸馏水中的吲哚菁绿溶液的光密度通常也会降低。在第7天,γ=900nm处开始出现新的吸收最大值,这可能是由于进一步形成聚集体导致颗粒更大。当染料溶解在蒸馏水中时,将浓缩溶液注入血液后光谱稳定最快。光谱稳定随温度降低而减慢。由于在定量染料稀释研究中快速的光谱稳定至关重要,因此应停止在注射液中添加白蛋白和/或等渗盐溶液的做法。当使用10g·L⁻¹的吲哚菁绿水溶液时,光谱稳定在37℃下所需时间不到1.5分钟,这对于几乎任何应用来说都足够快。

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