Effects of aqueous extract of Hibiscus sabdariffa on renal Na(+)-K(+)-ATPase and Ca(2+)-Mg(2+)-ATPase activities in Wistar rats.

Lawrence A Olatunji, Taofeek O Usman, Joseph O Adebayo, Victoria A Olatunji
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Abstract

Objective: To investigate the effects of oral administration of aqueous extract of Hibiscus sabdariffa on renal Na(+)-K(+)-ATPase and Ca(2+)-Mg(2+)-ATPase activities in rats.

Methods: The 25 and 50 mg/(kg·d) of aqueous extracts of H. sabdariffa were respectively given to rats in the experimental groups for 28 d, and rats in the control group received an appropriate volume of distilled water as vehicle. Na(+)-K(+)-ATPase and Ca(2+)-Mg(2+)-ATPase activities in the kidney were assayed by spectrophotometric method.

Results: Administrations of 25 and 50 mg/(kg·d) of aqueous extract of H. sabdariffa significantly decreased the Ca(2+)-Mg(2+)-ATPase activity in the kidney of rats (P<0.05). However, the renal Na(+)-K(+)-ATPase activity of the experimental rats was not affected by either dose of the extract. And the plasma Na(+), K(+) and Ca(2+) levels of the experimental rats had no significant changes. Administration of either dose of the extract did not result in any significant changes in body and kidney weights, the concentrations of plasma albumin and total protein, and alkaline phosphatase, aspartate aminotransferase and alanine aminotransferase activities. However, concentrations of creatinine and urea were significantly reduced by 50 mg/kg of the extract (P<0.05).

Conclusion: The present study indicates that oral administration of aqueous extract of H. sabdariffa may preserve the renal function despite a decreased renal Ca(2+)-Mg(2+)-ATPase activity.

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芙蓉水提物对Wistar大鼠肾脏Na(+)-K(+)- atp酶和Ca(2+)-Mg(2+)- atp酶活性的影响。
目的:探讨木芙蓉水提物对大鼠肾脏Na(+)-K(+)- atp酶和Ca(2+)-Mg(2+)- atp酶活性的影响。方法:实验组大鼠分别给予25 mg/(kg·d)、50 mg/(kg·d)的丹参水提物28 d,对照组大鼠给予适当体积的蒸馏水作为载药。用分光光度法测定肾内Na(+)-K(+)- atp酶和Ca(2+)-Mg(2+)- atp酶活性。结果:大鼠肾脏Ca(2+)-Mg(2+)-ATPase活性明显降低,但大鼠肾脏Ca(2+)-Mg(2+)-ATPase活性明显降低(p < 0.05)。结论:大鼠肾脏Ca(2+)-Mg(2+)-ATPase活性明显降低,大鼠肾脏Ca(2+)-Mg(2+)-ATPase活性明显降低。
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