Abstract

Background: The clinical management of the inflammatory diseases by using NSAIDs and selective COX-2 inhibitors, shunting arachidonic acid pathway to the 5‐LOX pathway, which is associated with the production of high amount of Leukotrienes and cysteinyl-leukotrienes, which are involved in pathophysiological of various type of cancers and inflammatory diseases. The substantial efforts are being made to the development of dual inhibitors against Cyclooxygenase (COX-2) and 5- Lipoxygenase (5-LOX) should be more growing demand for efficient as anti-inflammatory medicine with lower side effects than the currently available drugs. Maytenus arbutifolia (M. arbutifolia) is medicinal plant belongs to the family Celastraceae, and the leaves of M.arbutifolia have been used for the treatment of skin infections and inflammatory related disease. Objective: The current study aimed to examine the in vitro screening of M. arbutifolia leaf organic extracts for the development of anti-inflammatory agents through evaluate the inhibitory effect on Cyclooxygenase- 1and2 and 5- Lipoxygenases enzymes. Methods: The powdered dried leaves of the M. arbutifolia (100 g) was extracted with successive Soxhlet extraction by using solvents of low polarity (Petroleum ether) to a high polar solvent (Ethanol). These leaf extracts were evaluated for the in vitro anti-inflammatory activity by 5- Lipooxygenase, Cyclooxygenase-1 and Cyclooxygenase-2 inhibitory activities by ELISA method. Results: Among the tested extracts, the ethanolic leaf extracts of M.arbutifolia showed (MALET) potential 5-LOX inhibition i.e.77.58 % at 100µg/ml with IC50 of 23.76µg/ml, and also exhibited two fold COX-2 versus COX-1 inhibition, with potent COX-2 inhibitory effect with IC50 of 30.35μg/ml. The promising anti-inflammatory activity exhibited by MALET was due to the presence of secondary metabolites such as flavonoids, tannins and polyphenolic compounds. Conclusion: The current study concluded that ethanolic leaf extracts of M.arbutifolia is a promising source for isolation of 5-LOX and COX-2 dual inhibitory compound and highlights the potential traditional remedies for managing of inflammatory related diseases and cancers.

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