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青光眼滴眼液可控制青光眼大鼠模型的眼压并保护视神经。

Glaucoma drops control intraocular pressure and protect optic nerves in a rat model of glaucoma.

作者信息

Morrison J C, Nylander K B, Lauer A K, Cepurna W O, Johnson E

机构信息

Kenneth C. Swan Ocular Neurobiology Laboratory, Casey Eye Institute, Oregon Health Sciences University, Portland 97201, USA.

出版信息

Invest Ophthalmol Vis Sci. 1998 Mar;39(3):526-31.

PMID:9501862
Abstract

PURPOSE

To determine whether chronic topical glaucoma therapy can control intraocular pressure (IOP) and protect nerve fibers in a rat model of pressure-induced optic nerve damage.

METHODS

Sixteen adult Brown Norway rats were-administered unilateral episcleral vein injections of hypertonic saline to produce scarring of the aqueous humor outflow pathways. Twice daily applications of either artificial tears (n = 6), 0.5% betaxolol (n = 5), or 0.5% apraclonidine (n = 5) were delivered to both eyes, and awake pressures were monitored with a TonoPen XL tonometer for 17 days before the rats were killed.

RESULTS

For animals administered artificial tears, the mean IOP of the experimental eyes was 39 +/- 2 mm Hg compared with 29 +/- 1 mm Hg for the control eyes. This difference was statistically significant (P < 0.001). Mean IOPs in the experimental eyes of animals administered betaxolol and apraclonidine were 29 +/- 7 and 29 +/- 4 mm Hg, respectively, whereas the mean IOP in the control eyes was 28 +/- 1 mm Hg for both groups. There was no statistically significant difference among these values. The mean IOP for the experimental eyes in the betaxolol and apraclonidine groups was lower than that in animals administered artificial tears (P = 0.003). Quantitative histologic analysis of optic nerve damage in experimental eyes showed that four of the six animals administered artificial tears had damage involving 100% of the neural area. This degree of damage appeared in only 3 of 10 animals administered glaucoma therapy. Optic nerve protection was closely correlated with IOP history because damage was limited to less than 10% of the cross-sectional area in all animals in which the maximal IOP was less than or equal to 39 mm Hg, more than 2 SD below the mean value for eyes administered artificial tears.

CONCLUSIONS

Topical glaucoma therapy in this model can prevent IOP elevation and protect optic nerve fibers.

摘要

目的

在压力诱导的视神经损伤大鼠模型中,确定长期局部青光眼治疗是否能控制眼压(IOP)并保护神经纤维。

方法

对16只成年挪威棕色大鼠进行单侧巩膜静脉注射高渗盐水,以造成房水流出通道瘢痕形成。每天两次给双眼滴注人工泪液(n = 6)、0.5%倍他洛尔(n = 5)或0.5%阿可乐定(n = 5),在处死大鼠前,用TonoPen XL眼压计监测清醒状态下的眼压17天。

结果

对于滴注人工泪液的动物,实验眼的平均眼压为39±2 mmHg,而对照眼为29±1 mmHg。这种差异具有统计学意义(P < 0.001)。给予倍他洛尔和阿可乐定的动物实验眼的平均眼压分别为29±7 mmHg和29±4 mmHg,而两组对照眼的平均眼压均为28±1 mmHg。这些值之间无统计学显著差异。倍他洛尔和阿可乐定组实验眼的平均眼压低于滴注人工泪液的动物(P = 0.003)。对实验眼视神经损伤的定量组织学分析表明,滴注人工泪液的6只动物中有4只损伤累及100%的神经区域。这种损伤程度仅出现在接受青光眼治疗的10只动物中的3只。视神经保护与眼压历史密切相关,因为在所有最大眼压小于或等于39 mmHg的动物中,损伤仅限于横截面积的不到10%,比滴注人工泪液的眼睛的平均值低2个标准差以上。

结论

该模型中的局部青光眼治疗可预防眼压升高并保护视神经纤维。

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