An Experimental Study on the Antihyperuricemic Effect of Ficus Nota (Tibig) Leaf Extract in a Hyperuricemic Male Sprague-Dawley Rat Model

Authors

Earvin James R. Ramos

Bachelor of Science in Pharmacy PHINMA Araullo University (Philippines)

Maybelyn F. Parica

Bachelor of Science in Pharmacy PHINMA Araullo University (Philippines)

Ma. Lucky Rosario F. Galanga

Bachelor of Science in Pharmacy PHINMA Araullo University (Philippines)

Gerald M. Pagdanganan

Bachelor of Science in Pharmacy PHINMA Araullo University (Philippines)

Filipina L. Misalang

Bachelor of Science in Pharmacy PHINMA Araullo University (Philippines)

Article Information

DOI: 10.51244/IJRSI.2026.1306000416

Subject Category: Social science

Volume/Issue: 13/6 | Page No: 5602-5623

Publication Timeline

Submitted: 2026-07-01

Accepted: 2026-07-06

Published: 2026-07-15

Abstract

Gout, an inflammatory arthropathy associated with substantial global health and economic burdens, primarily results from hyperuricemia—an abnormal elevation of serum uric acid concentration. The limitations of conventional urate-lowering agents in terms of efficacy, safety, and accessibility underscore the need for alternative therapeutic strategies. This study evaluated the antihyperuricemic potential of the ethanolic leaf extract of Ficus nota (Tibig) using a potassium oxonate–induced hyperuricemic rat model. Phytochemical analysis confirmed the presence of bioactive constituents within the extract. Statistical evaluation using one-way ANOVA demonstrated a significant reduction in serum uric acid levels among the treatment groups, with F. nota extract exhibiting effects comparable to those of allopurinol. The observed antihyperuricemic activity may be attributed to xanthine oxidase inhibition and/or enhanced uric acid excretion. These findings suggest that F. nota possesses significant potential as a locally sourced, cost-effective phytotherapeutic candidate for hyperuricemia management. Further studies are warranted to elucidate its underlying mechanisms and long-term safety profile.

Keywords

Allopurinol; Antihyperuricemic activity; Ficus nota; Hyperuricemia

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References

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