Antidiarrhoeal Activity ofMusa paradisiacaSap in Wistar Rats

Author:

Yakubu Musa T.1,Nurudeen Quadri O.1,Salimon Saoban S.1,Yakubu Monsurat O.2,Jimoh Rukayat O.1,Nafiu Mikhail O.1,Akanji Musbau A.1,Oladiji Adenike T.1,Williams Felicia E.3

Affiliation:

1. Phytomedicine, Toxicology and Reproductive Biochemistry Research Laboratory, Department of Biochemistry, University of Ilorin, PMB 1515, Ilorin 24003, Nigeria

2. Department of Nursing Services, University of Ilorin Teaching Hospital, PMB 1459, Ilorin 240102, Nigeria

3. Department of Clinical Pharmacy and Pharmacy Practice, University of Ilorin, PMB 1515, Ilorin 24003, Nigeria

Abstract

The folkloric claim ofMusa paradisiacasap in the management of diarrhoea is yet to be substantiated or refuted with scientific data. Therefore, the aim of the current study was to screen the sap ofM. paradisiacafor both its secondary metabolites and antidiarrhoeal activity at 0.25, 0.50, and 1.00 mL in rats. Secondary metabolites were screened using standard methods while the antidiarrhoeal activity was done by adopting the castor oil-induced diarrhoeal, castor oil-induced enteropooling, and gastrointestinal motility models. The sap contained flavonoids, phenolics, saponins, alkaloids, tannins, and steroids while cardiac glycosides, anthraquinones, triterpenes, cardenolides, and dienolides were not detected. In the castor oil-induced diarrhoeal model, the sap significantly (P<0.05) prolonged the onset time of diarrhoea, decreased the number, fresh weight, and water content of feaces, and increased the inhibition of defecations. Na+-K+-ATPase activity in the small intestine increased significantly whereas nitric oxide content decreased. The decreases in the masses and volumes of intestinal fluid by the sap were accompanied by increase in inhibition of intestinal fluid content in the enteropooling model. The sap decreased the charcoal meal transit in the gastrointestinal motility model. In all the models, the 1.00 mL of the sap produced changes that compared well with the reference drugs. Overall, the antidiarrhoeal activity ofMusa paradisiacasap attributed to the presence of alkaloids, phenolics, flavonoids, and/or saponins which may involve, among others, enhancing fluid and electrolyte absorption throughde novosynthesis of the sodium potassium ATPase and/or reduced nitric oxide levels.

Publisher

Hindawi Limited

Subject

Complementary and alternative medicine

Reference53 articles.

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