1. Neuroprotective Actions of Hydrogen Sulfide-Releasing Compounds in Isolated Bovine Retinae.
- Author
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Bush, Leah, Robinson, Jenaye, Okolie, Anthonia, Muili, Fatima, Opere, Catherine A., Whiteman, Matthew, Ohia, Sunny E., and Njie Mbye, Ya Fatou
- Subjects
AQUEOUS humor ,SODIUM compounds ,INTRAOCULAR pressure ,ENZYME-linked immunosorbent assay ,OXIDATIVE stress ,RETINAL ganglion cells ,TRABECULAR meshwork (Eye) - Abstract
Background: We have evidence that hydrogen sulfide (H
2 S)-releasing compounds can reduce intraocular pressure in normotensive and glaucomatous rabbits by increasing the aqueous humor (AH) outflow through the trabecular meshwork. Since H2 S has been reported to possess neuroprotective actions, the prevention of retinal ganglion cell loss is an important strategy in the pharmacotherapy of glaucoma. Consequently, the present study aimed to investigate the neuroprotective actions of H2 S-releasing compounds against hydrogen peroxide (H2 O2 )-induced oxidative stress in an isolated bovine retina. Materials and Methods: The isolated neural retinae were pretreated with a substrate for H2 S biosynthesis called L-cysteine, with the fast H2 S-releasing compound sodium hydrosulfide, and with a mitochondrial-targeting H2 S-releasing compound, AP123, for thirty minutes before a 30-min oxidative insult with H2 O2 (100 µM). Lipid peroxidation was assessed via an enzyme immunoassay by measuring the stable oxidative stress marker, 8-epi PGF2α (8-isoprostane), levels in the retinal tissues. To determine the role of endogenous H2 S, studies were performed using the following biosynthesis enzyme inhibitors: aminooxyacetic acid (AOAA, 30 µM); a cystathione-β-synthase/cystathionine-γ-lyase (CBS/CSE) inhibitor, α–ketobutyric acid (KBA, 1 mM); and a 3-mercaptopyruvate-s-sulfurtransferase (3-MST) inhibitor, in the absence and presence of H2 S-releasing compounds. Results: Exposure of the isolated retinas to H2 O2 produced a time-dependent (10–40 min) and concentration-dependent (30–300 µM) increase in the 8-isoprostane levels when compared to the untreated tissues. L-cysteine (10 nM–1 µM) and NaHS (30 –100 µM) significantly (p < 0.001; n = 12) prevented H2 O2 -induced oxidative damage in a concentration-dependent manner. Furthermore, AP123 (100 nM–1 µM) attenuated oxidative H2 O2 damage resulted in an approximated 60% reduction in 8-isoprostane levels compared to the tissues treated with H2 O2 alone. While AOAA (30 µM) and KBA (1 mM) did not affect the L-cysteine evoked attenuation of H2 O2 -induced oxidative stress, KBA reversed the antioxidant responses caused by AP123. Conclusions: In conclusion, various forms of H2 S-releasing compounds and the substrate, L-cysteine, can prevent H2 O2 -induced lipid peroxidation in an isolated bovine retina. [ABSTRACT FROM AUTHOR]- Published
- 2024
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