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1.
Journal of China Pharmaceutical University ; (6): 265-272, 2019.
Article in Chinese | WPRIM | ID: wpr-804559

ABSTRACT

@#Hydrogen sulfide(H2S)is an endogenous gas messenger molecule with extremely broad biological activities including vasodilation, anti-oxidation, anti-inflammation, cardioprotection and anti-tumor. Similar to other gas messenger molecules, the biological activity of H2S is dependent on its location, concentration and duration of exposure. Therefore, the key scientific issue is how to improve the selectivity of H2S donor molecules to release appropriate concentrations of H2S at the target site(commonly pathological place), exerting therapeutic efficacy with limited side-effects. This article reviews the structures and H2S release mechanisms of two classes of H2S donors focusing on the advances in the recently developed H2S donors with controllable release potential of H2S, thus providing new ideas for future H2S-based drug research.

2.
Braz. j. med. biol. res ; 46(8): 708-714, ago. 2013. tab, graf
Article in English | LILACS | ID: lil-684527

ABSTRACT

Our objective was to investigate the protective effect of Lawesson's reagent, an H2S donor, against alendronate (ALD)-induced gastric damage in rats. Rats were pretreated with saline or Lawesson's reagent (3, 9, or 27 µmol/kg, po) once daily for 4 days. After 30 min, gastric damage was induced by ALD (30 mg/kg) administration by gavage. On the last day of treatment, the animals were killed 4 h after ALD administration. Gastric lesions were measured using a computer planimetry program, and gastric corpus pieces were assayed for malondialdehyde (MDA), glutathione (GSH), proinflammatory cytokines [tumor necrosis factor (TNF)-α and interleukin (IL)-1β], and myeloperoxidase (MPO). Other groups were pretreated with glibenclamide (5 mg/kg, ip) or with glibenclamide (5 mg/kg, ip)+diazoxide (3 mg/kg, ip). After 1 h, 27 µmol/kg Lawesson's reagent was administered. After 30 min, 30 mg/kg ALD was administered. ALD caused gastric damage (63.35±9.8 mm2); increased levels of TNF-α, IL-1β, and MDA (2311±302.3 pg/mL, 901.9±106.2 pg/mL, 121.1±4.3 nmol/g, respectively); increased MPO activity (26.1±3.8 U/mg); and reduced GSH levels (180.3±21.9 µg/g). ALD also increased cystathionine-γ-lyase immunoreactivity in the gastric mucosa. Pretreatment with Lawesson's reagent (27 µmol/kg) attenuated ALD-mediated gastric damage (15.77±5.3 mm2); reduced TNF-α, IL-1β, and MDA formation (1502±150.2 pg/mL, 632.3±43.4 pg/mL, 78.4±7.6 nmol/g, respectively); lowered MPO activity (11.7±2.8 U/mg); and increased the level of GSH in the gastric tissue (397.9±40.2 µg/g). Glibenclamide alone reversed the gastric protective effect of Lawesson's reagent. However, glibenclamide plus diazoxide did not alter the effects of Lawesson's reagent. Our results suggest that Lawesson's reagent plays a protective role against ALD-induced gastric damage through mechanisms that depend at least in part on activation of ATP-sensitive potassium (KATP) channels.


Subject(s)
Animals , Female , Rats , Alendronate/antagonists & inhibitors , Gastric Mucosa/drug effects , Hydrogen Sulfide/pharmacology , Indicators and Reagents/pharmacology , Organothiophosphorus Compounds/pharmacology , Stomach Diseases/chemically induced , Analysis of Variance , Cystathionine gamma-Lyase/analysis , Diagnosis, Computer-Assisted , Diazoxide/administration & dosage , Gastric Mucosa/pathology , Glutathione/analysis , Glyburide/administration & dosage , Interleukin-1beta/analysis , KATP Channels/pharmacology , Malondialdehyde/analysis , Peroxidase/analysis , Peroxidase/metabolism , Rats, Wistar , Stomach Diseases/enzymology , Stomach Diseases/pathology , Tumor Necrosis Factor-alpha/analysis
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