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Gastroprotective mechanism of Talinum triangulare on ethanol-induced gastric ulcer in Wistar rats via inflammatory, antioxidant, and H + /K + -ATPase inhibition-mediated pathways

The increase in the incidence of gastric ulcer (GU) has posed major threat on public health. This research aimed to evaluate gastroprotective properties of the aqueous leaf extract of (AETT) in ethanol-induced gastric ulceration. GU was induced oral administration of single dose of 5 mLkg of 90% eth...

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Published in:Drug and chemical toxicology (New York, N.Y. 1978) N.Y. 1978), 2024-07, p.1-14
Main Authors: Oladele, Johnson O, Ojuederie, Omena B, Oladele, Oluwaseun T, Ajayi, Ebenezer I O, Olaniyan, Monisola D, Atolagbe, Oluwafemi S, Okoro, Oluwaseyi E, Adewale, Omowumi O, Oyeleke, Oyedotun M
Format: Article
Language:English
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Summary:The increase in the incidence of gastric ulcer (GU) has posed major threat on public health. This research aimed to evaluate gastroprotective properties of the aqueous leaf extract of (AETT) in ethanol-induced gastric ulceration. GU was induced oral administration of single dose of 5 mLkg of 90% ethanol in rats and protection of 200 mgkg bw of AETT and 20 mgkg bw of omeprazole was investigated for 14 d oral treatment. Influence of AETT on anti-inflammatory, redox assays, ulcer index (UI), and gastric mucosa histological alterations were evaluated. Significant increase in myeloperoxidase (MPO) and tumor necrosis factor-alpha levels compared to untreated group established gastric inflammation in rats induced by ethanol. Gastric ulcerated group exhibited heightened oxidative stress with concurrent decline in activities of antioxidant enzymes. Ethanol exposure to rats resulted in induction of lipid peroxidation, prominently elevating gastric malondialdehyde (MDA) concentration. Nevertheless, treatment with AETT or omeprazole exhibited substantial anti-inflammatory effects within gastric mucosa by attenuating expression of markers associated with inflammation. AETT demonstrated reduction in concentrations of MDA and H O , thereby alleviating progression of lipid peroxidation cascades. Also, AETT exhibited mitigating effect on ethanol-induced oxidative harm by enhancing the functionality of protective enzymes and elevating glutathione (GSH) concentration. Overall, AETT exhibited enhancements in activities of cytoprotective antioxidant enzymes, mitigated impact of oxidative stress and inflammation, inhibited lipid peroxidation, and decreased UI score. These beneficial effects could be attributed to phytochemicals present in AETT including 6,10,14-trimethyl-2-pentadecanone and Phytol. Outcome of this study established the traditional herbal claims of AETT.
ISSN:0148-0545
1525-6014
1525-6014
DOI:10.1080/01480545.2024.2365435