Yoneya S, Saito T, Komatsu Y, Koyama I, Takahashi K, Duvoll-Young J
Department of Ophthalmology, Saitama Medical School, Iruma, Japan.
Invest Ophthalmol Vis Sci. 1998 Jun;39(7):1286-90.
Binding properties of indocyanine green (ICG) to human plasma proteins were identified using electrophoresis and a fundus video system.
Blood samples were obtained from three healthy volunteers after intravenous administration of ICG. The resulting plasma samples were fractionated by agarose gel immunoelectrophoresis and polyacrylamide gel DISC electrophoresis. In the former, antisera, anti-apolipoprotein (Apo)-A, and anti-Apo-B antibodies were used to identify all classes of plasma proteins, high-density lipoprotein (HDL), and low-density lipoprotein (LDL), respectively. In the latter method, plasma samples could be separated into chylomicron, very low-density lipoprotein, LDL, and HDL. The electrophoretic pattern obtained by each method was observed with an ICG fundus video system. Furthermore, we studied the affinity of ICG for lipids that were common molecular components of HDL and LDL. Four kinds of ICG solutions mixed with phospholipid, free cholesterol, esterified cholesterol, and triacylglycerol were observed with the ICG fundus video system.
Both electrophoretic studies showed that ICG bound intensely to HDL and moderately to LDL, and only the solution with phospholipid fluoresced brightly when observed with the ICG fundus video system.
These findings indicated low vascular or tissue permeability of ICG, which is caused by the larger molecular size of HDL and LDL. Also noted was that the ICG fluorescence observed in the angiogram may be equivalent to the hemodynamics of HDL alone or in combination with LDL in the bloodstream. This biochemical consideration may be a basis for the further understanding of ICG angiography.
使用电泳和眼底视频系统鉴定吲哚菁绿(ICG)与人血浆蛋白的结合特性。
在静脉注射ICG后,从三名健康志愿者身上采集血样。所得血浆样本通过琼脂糖凝胶免疫电泳和聚丙烯酰胺凝胶圆盘电泳进行分离。在前者中,分别使用抗血清、抗载脂蛋白(Apo)-A和抗Apo-B抗体来鉴定所有血浆蛋白类别、高密度脂蛋白(HDL)和低密度脂蛋白(LDL)。在后者方法中,血浆样本可分离为乳糜微粒、极低密度脂蛋白、LDL和HDL。用ICG眼底视频系统观察每种方法获得的电泳图谱。此外,我们研究了ICG对HDL和LDL常见分子成分脂质的亲和力。用ICG眼底视频系统观察了四种与磷脂、游离胆固醇、酯化胆固醇和三酰甘油混合的ICG溶液。
两项电泳研究均表明,ICG与HDL强烈结合,与LDL中度结合,并且在用ICG眼底视频系统观察时,只有含磷脂的溶液发出明亮荧光。
这些发现表明ICG的血管或组织通透性较低,这是由HDL和LDL较大的分子尺寸所致。还注意到血管造影中观察到的ICG荧光可能等同于血液中单独的HDL或与LDL结合的血流动力学。这种生化考量可能是进一步理解ICG血管造影的基础。