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ε-氨基己酸不抑制猴子的房水流出阻力清除。

epsilon-Aminocaproic acid does not inhibit outflow resistance washout in monkeys.

作者信息

Ménage M J, Croft M A, Gange S J, Kaufman P L

机构信息

Department of Ophthalmology and Visual Sciences, University of Wisconsin Medical School, Madison, USA.

出版信息

Invest Ophthalmol Vis Sci. 1995 Aug;36(9):1745-9.

PMID:7635651
Abstract

PURPOSE

To determine whether the anti-fibrinolytic agent epsilon-aminocaproic acid (EACA) inhibits the washout of resistance to aqueous humor outflow during anterior chamber perfusion in cynomolgus monkeys, as it does in rabbits.

METHODS

Nine adult ocular normotensive cynomolgus monkeys underwent bilateral anterior chamber perfusion with Bárány solution, containing 3.8 mM EACA unilaterally. Total outflow facility was determined in both eyes simultaneously for approximately 4 hours by the two-level constant pressure method. The data were analyzed using a linear regression model that tested treated versus control eye differences over time against a slope and intercept of 0.0.

RESULTS

Outflow facility increased and resistance decreased significantly over time similarly in both EACA-treated and control eyes; i.e., neither the slopes nor the intercepts for facility or resistance, respectively, differed between the eyes over the entire 4-hour measurement period or for the initial 90 minutes considered separately. The facility increase and resistance decrease as functions of perfusion volume also were similar in EACA-treated and control eyes.

CONCLUSIONS

EACA at this dose does not prevent resistance washout in the cynomolgus monkey, in contrast to the rabbit. This species difference may relate to the vastly different anatomy and physiology of their outflow pathways.

摘要

目的

确定抗纤溶药物ε-氨基己酸(EACA)是否如在兔中那样,抑制食蟹猴前房灌注期间房水流出阻力的消除。

方法

9只成年眼压正常的食蟹猴双眼用含有3.8 mM EACA的巴拉尼溶液进行单侧前房灌注。通过两级恒压法同时测定双眼的总流出率约4小时。使用线性回归模型分析数据,该模型测试治疗眼与对照眼随时间的差异与斜率和截距0.0的关系。

结果

EACA治疗眼和对照眼中,流出率随时间显著增加,阻力随时间显著降低;即在整个4小时测量期内,或分别考虑最初90分钟时,双眼的流出率或阻力的斜率和截距均无差异。EACA治疗眼和对照眼中,流出率增加和阻力降低作为灌注量的函数也相似。

结论

与兔不同,该剂量的EACA不能防止食蟹猴的阻力消除。这种物种差异可能与其流出途径的解剖学和生理学差异巨大有关。

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