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butea monosperma/phosphatase

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Role of butea frondosa in ameliorating gastric markers in induced gastric lesions of rats.

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The study evaluated the ability of the alcohol extract of Butea frondosa to protect the gastro-duodenal lining from injury inflicted by acetic acid and pyloric ligation in rats. The induced gastric lesions lead to the generation of alkaline phosphatase and pepsin, which serve as important markers of
OBJECTIVE To evaluate the effects of the tuberous powder of Butea superba Roxb. (Leguminosae) on blood testosterone and luteinizing hormone (LH), and toxicity in male rats. METHODS Adult male Wistar rats were orally treated with 0, 10, 100, 150 or 200 mg/kg BW/day of B. superba powder suspension in

Osteogenic activity of constituents from Butea monosperma.

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Phytochemical investigation from the stem bark of Butea monosperma, led to the isolation and identification of three new compounds named buteaspermin A (1), buteaspermin B (2) and buteaspermanol (3), along with 19 known compounds. The structure of compounds 1-22 were established on the basis of

Hepatoprotective potential of aqueous extract of Butea monosperma against CCl(4) induced damage in rats.

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Aqueous extract of flowers of Butea monosperma (Fabaceae) was evaluated at different dose levels (200, 400, 800 mg/kg, p.o.) for its protective efficacy against CCl(4) (1.5 ml/kg i.p.) induced acute liver injury to validate its use in traditional medicines. The CCl(4) administration altered various

Tree growth rate regulate the influence of elevated CO2 on soil biochemical responses under tropical condition.

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Tree growth rate can complicate our understandings of plant belowground responses to elevated CO2 (eCO2) in tropical ecosystems. We studied the effects of eCO2 on plant growth parameters, and rhizospheric soil properties including soil organic carbon (SOC), glomalin

Evaluation of phytochemical-incorporated porous polymeric sponges for bone tissue engineering: a novel perspective.

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Porous polymeric scaffolds are extensively studied for delivery of bone growth factors. Since phytochemicals are known to produce changes in cell signalling and other metabolic pathways, osteogenic phytochemicals, that is, extracts of Cissus quadrangularis and Butea monosperma, are incorporated into

Design and evaluation of herbal hepatoprotective formulation against paracetamol induced liver toxicity.

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OBJECTIVE To isolate and identify the quercetin from polyherbal hepatoprotective formulation. Polyherbal formulations were developed by using five bioactive fractionated extracts of Butea monosperma, Bauhinia variegata and Ocimum gratissimum for treatment of liver disorders by exploiting the
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