Song Zhengyu, Gong Yuanyuan, Liu Haiyun, Ren Qiushi, Sun Xiaodong
Shanghai First People’s Hospital, School of Medicine, Shanghai JiaoTong University, Shanghai, P.R. China.
Mol Vis. 2011;17:2056-64. Epub 2011 Aug 4.
To evaluate the hypotensive effects of glycyrrhizin (GL) on a rabbit model of ocular hypertension (OH) induced by triamcinolone acetonide (TA).
Forty New Zealand White Rabbits were divided as follows: control (intravitreal injection of sterile saline solution); GL (intravitreal injection of sterile saline solution, then fed with 25mg GL/day); TA (intravitreal TA injection); TA+GL (intravitreal TA injection, then fed with GL) and GL+TA (pre-treated with GL for 3 days, then got TA injection and the following GL treatment). Intraocular pressure (IOP), flash electroretinogram (flash ERG) and flash visual evoked potential (flash VEP) were measured during the follow-up (28 days). The aqueous humor was analyzed, using (1)H-nuclear magnetic resonance spectroscopy and principal components analysis (PCA).
IOP elevation was observed in the TA group during the follow-up, compared to the controls (p<0.01). The IOP was decreased in the TA+GL group and the GL+TA group, compared to the TA group (p<0.05). Both in flash ERG and VEP, the amplitudes were decreased, and the implicit time was prolonged in the TA group, compared to the controls (p<0.05); and the parameters were improved after intervention of GL, compared to the TA group (p<0.05). PCA results indicated that TA could affect ocular metabolism (especially the sugar metabolism), and GL could inhibit it.
The administration of GL could suppress OH induced by TA in rabbits, and improve their electrophysiological parameters. Metabolomics is a useful tool in ophthalmology research. Our results indicate that TA-induced ocular metabolism changes could be compensated by GL.
评估甘草酸(GL)对曲安奈德(TA)诱导的兔高眼压(OH)模型的降压作用。
将40只新西兰白兔分为以下几组:对照组(玻璃体内注射无菌盐溶液);GL组(玻璃体内注射无菌盐溶液,然后每天喂食25mg GL);TA组(玻璃体内注射TA);TA+GL组(玻璃体内注射TA,然后喂食GL)和GL+TA组(先用GL预处理3天,然后进行TA注射及后续GL治疗)。在随访期间(28天)测量眼压(IOP)、闪光视网膜电图(闪光ERG)和闪光视觉诱发电位(闪光VEP)。使用氢核磁共振波谱和主成分分析(PCA)分析房水。
与对照组相比,随访期间TA组眼压升高(p<0.01)。与TA组相比,TA+GL组和GL+TA组眼压降低(p<0.05)。与对照组相比,TA组的闪光ERG和VEP的振幅均降低,潜伏时延长(p<0.05);与TA组相比,GL干预后参数得到改善(p<0.05)。PCA结果表明,TA可影响眼部代谢(尤其是糖代谢),而GL可抑制这种影响。
给予GL可抑制兔TA诱导的高眼压,并改善其电生理参数。代谢组学是眼科研究中的一种有用工具。我们的结果表明,GL可补偿TA诱导的眼部代谢变化。