Stone R A, Wilson C M
Invest Ophthalmol Vis Sci. 1982 Mar;22(3):303-9.
Rabbit ciliary body-iris preparations accumulate 14C-fluorescein against a concentration gradient when incubated in Tyrode's solution at 37 degrees C and pH 7.4 for 1 hr. Under these conditions, fluorescein metabolism is negligible. This accumulation is depressed by cyanide, dinitrophenol, iodoacetate, by incubation in glucose-free medium, and by incubation at 0 degrees C. This uptake is not inhibited significantly by incubation in sodium-free medium, and relatively high concentrations of ouabain are necessary to cause inhibition. Initial uptake studies show saturation kinetics with half-saturation concentration = 0.12 mM and maximum accumulation rate = 2.3 mmoles/hr/kg wet tissue weight. Fluorescein thus appears to accumulate by a carrier-mediated active uptake process. On the basis of series of competition experiments, it is concluded that fluorescein uptake and p-aminohippurate uptake occur by similar, although not identical, mechanisms.
兔睫状体 - 虹膜制剂在37℃、pH 7.4的台氏液中孵育1小时后,能逆浓度梯度积累14C - 荧光素。在这些条件下,荧光素代谢可忽略不计。氰化物、二硝基苯酚、碘乙酸、在无糖培养基中孵育以及在0℃孵育都会抑制这种积累。在无钠培养基中孵育不会显著抑制这种摄取,且需要相对高浓度的哇巴因才能产生抑制作用。初始摄取研究显示出饱和动力学,半饱和浓度 = 0.12 mM,最大积累速率 = 2.3毫摩尔/小时/千克湿组织重量。因此,荧光素似乎是通过载体介导的主动摄取过程积累的。基于一系列竞争实验得出结论,荧光素摄取和对氨基马尿酸摄取通过相似但不完全相同的机制发生。