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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Fluorescence of indocyanine green in blood: intensity dependence on concentration and stabilization with sodium polyaspartate
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Fluorescence of indocyanine green in blood: intensity dependence on concentration and stabilization with sodium polyaspartate

机译:血液中吲哚菁绿的荧光:强度依赖于浓度和聚天冬氨酸钠的稳定性

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摘要

Indocyanine green (ICG) has been widely used in cardiovascular, hepatic, and ophthalmologic studies. Application of this fluorescent dye has been handicapped by its poor stability in solution and by the complex dependence of its fluorescence intensity on concentration Noncovalent interactions between ICG and sodium polyaspartate (PASP) stabilize ICG fluorescence in aqueous solution, but the effect of PASP on ICG fluorescence in blood has not been described. The current study had two main goals: first, to characterize in vitro in blood the relationship between fluorescence intensity and concentration of ICG-PASP (ICG) and the stability of this relationship over time; second, to test a new phenomenological model describing the dependence of ICG fluorescence on concentration. Freshly-prepared ICG and ICG-PASP solutions produced the same fluorescence intensity over a wide range of concentrations (0.0005-0.1271 mg/ml). The peak fluorescence of ICG was reduced by 11% after 10 h and by 72% at 7 days. In contrast, the peak fluorescence intensity of ICG-PASP solutions was nearly unchanged for up to 14 days. The dependence of the fluorescence intensity on concentration was accurately represented by our model that accounted for the generation of fluorescence following light absorption light absorption, and for the reabsorption of the emitted fluorescence by ICG.
机译:吲哚菁绿(ICG)已广泛用于心血管,肝脏和眼科研究。该荧光染料在溶液中的稳定性差,且荧光强度对浓度的复杂依赖性受到阻碍,ICG和聚天冬氨酸钠(PASP)之间的非共价相互作用稳定了水溶液中的ICG荧光,但PASP对ICG荧光的影响血液中尚未有描述。当前的研究有两个主要目标:首先,在血液中体外表征荧光强度和ICG-PASP浓度(ICG)之间的关系以及这种关系随时间的稳定性。其次,测试描述ICG荧光对浓度的依赖性的新现象学模型。新鲜制备的ICG和ICG-PASP溶液在很宽的浓度范围(0.0005-0.1271 mg / ml)中产生相同的荧光强度。 10小时后ICG的峰值荧光降低了11%,而在7天时降低了72%。相反,在长达14天的时间内,ICG-PASP溶液的峰值荧光强度几乎没有变化。我们的模型准确地表示了荧光强度对浓度的依赖性,该模型解释了光吸收光吸收后荧光的产生以及ICG对发射的荧光的重吸收。

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