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carica/phosphatase

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Esterase and acid phosphatase polymorphism in the fig tree (Ficus carica L.).

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The genetics of two enzymatic loci, esterase (Est-D) and acid phosphatase (AcP-A), were studied by means of polyacrylamide gel electrophoresis in the fig tree (Ficus carica L.). Two codominant alleles are described at the Est-D locus and four codominant alleles at the AcP-A locus. Heterozygotes at
Arbuscular mycorrhizal fungi (AMF) are able to increase root enzymatic activity of acid and alkaline phosphatases. However, the role of AMF on phosphatase activity has not been reported in papaya (Carica papaya L.), which is frequently established at places with soil phosphorus (P) deficiencies. The

Effect of dried fruits of Carica papaya Linn on hepatotoxicity.

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Ethanol and aqueous extracts of Carica papaya has been evaluated for its anti hepatotoxic activity. The ethanol and aqueous extracts of Carica papaya showed remarkable hepatoprotective activity against CCl(4) induced hepatotoxicity. The activity was evaluated by using biochemical parameters such as

Reversible contraception with chloroform extract of Carica papaya Linn. seeds in male rabbits.

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The contraceptive efficacy and reversibility of the chloroform extract of the seeds of Carica papaya in adult male rabbits were investigated. Eighteen adult male rabbits were divided into three groups of six animals each; Group I--control, Group II--administered chloroform extract of the seeds of
Contraceptive efficacy, reversibility and toxicity, if any, of the benzene, chloroform and ethyl acetate chromatographic fractions of the chloroform extract of the seeds of Carica papaya have been investigated in adult male rabbits at a dose regimen of 50 mg/animal/day for 150 days of treatment.

Hepatotoxicity of the Methanol Extract of Carica papaya. (Paw-Paw) Seeds in Wistar Rats.

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Activity of Carica papaya. Linn. (commonly known as paw-paw.) seed extract in liver physiology of albino (Wistar) rats was studied. The MeOH extract of C. papaya. seeds were Soxhlet extracted. Tolerated doses of C. papaya. were estimated in acute toxicity studies and administered orally, single or

Involvement of AMPK activation in the inhibition of hepatic gluconeogenesis by Ficus carica leaf extract in diabetic mice and HepG2 cells.

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The aim of this study was to explore the possible mechanisms of Ficus carica leaf (FCL) extract in suppressing hepatic gluconeogenesis in diabetic mice. Diabetic mice (streptozotocin-induced) received 1 g/kg of FCL extract twice a day for 6 weeks. Fasting blood glucose levels were measured and a 2-h

Aqueous extract of Carica papaya Linn. roots potentially attenuates arsenic induced biochemical and genotoxic effects in Wistar rats.

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In Africa, the fruit, leaf, seed and roots of Carica papaya Linn. are generally used to treat a variety of diseases such as malaria, cancer, and cardiovascular diseases. In this study, we evaluated the protective potentials of aqueous extract of C. papaya roots on arsenic-induced biochemical and

Protective effects of Ficus carica leaves on glucose and lipids levels, carbohydrate metabolism enzymes and β-cells in type 2 diabetic rats.

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BACKGROUND The decoctions of Ficus carica Linn. (Moraceae) leaves are used in the folklore treatment of diabetes. OBJECTIVE To evaluate the effect of F. carica on glucose and lipids levels, carbohydrate metabolism enzymes and β-cells protective effects in type 2 diabetes. METHODS Diabetes was
BACKGROUND Carica papaya Linn is used in a traditional medicine for hepatobiliary disorders. This study investigated the hepatomodulatory effects of aqueous extracts of C. papaya leaf (CPL) and unripe fruit (CPF) at doses of 100 and 300 mg/kg on carbon tetrachloride (CCl4) and acetaminophen
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