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1.
International Eye Science ; (12): 1197-1201, 2007.
Article in Chinese | WPRIM | ID: wpr-641654

ABSTRACT

AIM: The effects of ZX-5, as nitric oxide (NO) donor, on ocular blood flow has been investigated using colored microsphere technique in previous study. The relationship between the production of NO by ZX-5 and ocular blood flow has been evaluated. ZX-5 has been shown to have strong positive effect on increasing choroidal blood flow. However,the effect of ZX-5 on retinal function recovery, the effects of its optical isomers, (R, R)-ZX-5 and (S, S)-ZX-5, on choroidal blood flow and retinal function recovery have not been studied and merit investigation.METHODS: Colored microsphere technique was used for in vivo experiments to determine choroidal blood flow of ocular hypertension (40mmHg) in rabbit eyes. Electroretinography was used to measure the b-wave recovery as an indication of retinal function recovery.RESULTS: (R, R)-ZX-5 increased choroidal blood flow at 10g/L, 50μL instillation into eyes at all time points (P<0.05).(S, S)-ZX-5 was not effective in increasing choroidal blood flow. ZX-5 and (R, R)-ZX-5 showed significant effects in retinal function recovery after ischemia of the retina at all time points (P<0.05); whereas (S, S)-ZX-5 did not show significant effect on recovery of b-wave after ischemia at most time points except at 120 and 240 minutes.CONCLUSION: ZX-5 and (R, R)-ZX-5 have high potency in increasing the choroidal blood flow and improving the retinal function recovery. It is hoped that they could be used for the prevention/treatment of ocular blood flow related eye diseases.

2.
Chinese Pharmacological Bulletin ; (12)2003.
Article in Chinese | WPRIM | ID: wpr-562172

ABSTRACT

Aim To investigate the effects of(S,S)ZX-5 and(R,R)ZX-5 on eNOS mRNA and protein levels.Methods Cell culture was used for the experiments in vitro.The effects of eNOS mRNA were investigated by RT-PCR.The effects of eNOS protein levels were investigated by Western blot.Results(S,S)ZX-5 in concentration of 30 mg?L-1 up-regulated eNOS expressions at protein and mRNA levels significantly in cultured ECV304(P

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