Abstract
BACKGROUND AND PURPOSE: Retinopathy, as a common complication of diabetes, is a leading cause of reduced visual acuity and acquired blindness in the adult population. The aim of present study was to investigate the therapeutic effect of hydrogen sulfide on streptozotocin (STZ)-induced diabetic retinopathy in rats. EXPERIMENTAL APPROACH: Rats were injected with a single i.p. injection of STZ (60 mg·kg-1) to induce diabetic retinopathy. Two weeks later, the rats were treated with NaHS (i.p. injection of 0.1 mL·kg -1·d-1 of 0.28 mol·L-1 NaHS, a donor of H2S) for 14 weeks. KEY RESULTS: Treatment with H 2S had no significant effect on blood glucose in STZ-induced diabetic rats. Treatment with exogenous H2S enhanced H2S levels in both plasma and retinas of STZ-induced diabetic rats. Treatment with H 2S in STZ-treated rats improved the retinal neuronal dysfunction marked by enhanced amplitudes of b-waves and oscillatory potentials and expression of synaptophysin and brain-derived neurotrophic factor, alleviated retinal vascular abnormalities marked by reduced retinal vascular permeability and acellular capillary formation, decreased vitreous VEGF content, down-regulated expressions of HIF-1α and VEGFR2, and enhanced occludin expression, and attenuated retinal thickening and suppressed expression of extracellular matrix molecules including laminin β1 and collagen IVα3 expression in retinas of STZ-induced diabetic rats. Treatment with H 2S in retinas of STZ-induced diabetic rats abated oxidative stress, alleviated mitochondrial dysfunction, suppressed NF-κB activation and attenuated inflammation. CONCLUSIONS AND IMPLICATIONS: Treatment with H 2S alleviates STZ-induced diabetic retinopathy in rats possibly through abating oxidative stress and suppressing inflammation. © 2013 The British Pharmacological Society.
Author supplied keywords
Cite
CITATION STYLE
Si, Y. F., Wang, J., Guan, J., Zhou, L., Sheng, Y., & Zhao, J. (2013). Treatment with hydrogen sulfide alleviates streptozotocin-induced diabetic retinopathy in rats. British Journal of Pharmacology, 169(3), 619–631. https://doi.org/10.1111/bph.12163
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.