Phytochemical ComposiƟ on, AnƟ -Inflammatory and AnƟ -Ulcer ProperƟ es of N-Hexane Fruit Extract from Gorontula (Azanza garckeana) In-Vitro
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InternaƟ onal Journal of Pure and Applied Science Research
Abstract
The research explored the phytochemical profile, anti-inflammatory, and anti-ulcerogenic properties of the
n-hexane fruit extract of Gorontula (Azanza garckeana). Phytochemical analysis identified key bioactive compounds,
including alkaloids, tannins, glycosides, and terpenoids, which contribute to the fruit’s significant biochemical
activity. The anti-inflammatory potential was assessed through four in vitro assays: inhibition of hemolysis,
proteinase activity, protein denaturation, and membrane stabilization. The anti-ulcerogenic effect was evaluated
using the H+/K+-ATPase inhibition assay, targeting the proton pump critical to gastric acid secretion. Results
indicated that the n-hexane fruit extract of Gorontula exhibited dose-dependent anti-inflammatory activity, though
its inhibition of protein denaturation was significantly lower than that of diclofenac sodium across all tested
concentrations. Similarly, diclofenac sodium outperformed the extract in stabilizing human red blood cell (HRBC)
membranes and inhibiting heat-induced hemolysis, reflecting stronger interference with inflammatory processes
such as lysosomal membrane disruption and erythrocyte lysis. However, at 1000 μg/ml, the Gorontula extract
demonstrated potent H+/K+-ATPase inhibition, comparable to omeprazole, suggesting its ability to reduce gastric
acid production by targeting the proton pump’s enzymatic activity. The extract’s mechanisms likely involve
interactions between its phytochemicals (e.g., terpenoids and tannins) and inflammatory mediators, stabilizing
cellular membranes and inhibiting proteases that exacerbate inflammation. Its anti-ulcerogenic effect may stem from
alkaloids and glycosides, which could modulate gastric pH or protect mucosal barriers. Both the Gorontula extract
and omeprazole displayed robust inhibition of hemolysis, protein denaturation, proteinase activity, membrane
stabilization, and H+/K+-ATPase, positioning them as candidates for novel anti-inflammatory and anti-ulcer
therapeutics. Further isolation and structural characterization of the extract’s bioactive compounds, alongside in vivo
studies, are essential to validate these findings and develop effective biopharmaceuticals
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