Barsotti M F, Bartels S P, Freddo T F, Kamm R D
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge.
Invest Ophthalmol Vis Sci. 1992 Mar;33(3):581-95.
In vivo aqueous fluorophotometry, morphology, and computational modeling were combined to examine the source of protein and the pathway by which protein enters the aqueous humor of monkeys. A computational model was developed to determine the likelihood of a diffusional route for delivering plasma proteins from ciliary body capillaries via the iris to anterior chamber aqueous humor, bypassing the posterior chamber. Model predictions were compared to aqueous fluorophotometric data obtained from monkeys following a single intravenous injection of fluoresceinated horseradish peroxidase (F-HRP, 250 mg/kg body mass). Model predictions of the magnitude and time course of anterior chamber F-HRP concentration agree with the fluorophotometric measurements. For example, of anterior chamber F-HRP concentration as a percentage of initial plasma F-HRP concentration at 90 min and 180 min post-injection was predicted to be 0.02% and 0.05%, respectively, and was measured to be 0.01-0.03% and 0.03-0.06%, respectively. In addition, model predictions in the case of a constant plasma protein level also are consistent with experimental data. The steady-state anterior chamber total protein concentration as a percentage of plasma protein concentration was predicted to be 0.2% and was assayed to be 0.05-0.2%. As in our previous study of the normal rabbit eye, morphologic and tracer localization evidence combined with the good agreement between model predictions and experimental data lead to the conclusion that a significant amount of the plasma protein normally present in monkey aqueous humor originates in ciliary body capillaries and diffuses anteriorly through the iris and into the anterior chamber.
将体内水相荧光光度法、形态学和计算模型相结合,以研究蛋白质的来源以及蛋白质进入猴眼房水的途径。开发了一个计算模型,以确定血浆蛋白从睫状体毛细血管经虹膜输送至前房房水而绕过后房的扩散途径的可能性。将模型预测结果与单次静脉注射荧光素化辣根过氧化物酶(F-HRP,250mg/kg体重)后从猴获得的房水荧光光度数据进行比较。前房F-HRP浓度的大小和时间进程的模型预测与荧光光度测量结果一致。例如,预测注射后90分钟和180分钟时前房F-HRP浓度占初始血浆F-HRP浓度的百分比分别为0.02%和0.05%,而测量值分别为0.01-0.03%和0.03-0.06%。此外,血浆蛋白水平恒定情况下的模型预测也与实验数据一致。预测稳态前房总蛋白浓度占血浆蛋白浓度的百分比为0.2%,测定值为0.05-0.2%。正如我们之前对正常兔眼的研究一样,形态学和示踪剂定位证据以及模型预测与实验数据之间的良好一致性得出结论,猴眼房水中正常存在的大量血浆蛋白起源于睫状体毛细血管,并向前扩散穿过虹膜进入前房。