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gymnema montanum/phosphatase

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Oleanane hemiacetal glycosides from Gymnema latifolium and their inhibitory effects on protein tyrosine phosphatase 1B.

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Gymnema sylvestre (Retz.) R. Br. ex Schult. has a long history to be used as an antidiabetic herbal medicine. Various varieties of G. sylvestre, have been studied intensively on their 3β-hydroxy oleanane triterpenoid composition for hypoglycemic effects. It is also well-known that most species

Gymnemic Acid Ameliorate Hyperglycemia Through PI3K/AKT and AMPK Mediated Signaling Pathway in T2DM Rats.

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Gymnemic acid (GA) isolated from gymnema sylvestre (Retz.) Schult has been shown to display anti-diabetic activity, however the molecular mechanisms governing these effects are unclear. In this study, GA (40, 80 mg/kg/day) was evaluated by type 2 diabetes mellitus (T2DM) rats to explore its
OBJECTIVE Gymnema sylvestre (Asclepiadaceae) is emerging as a potential treatment for the management of diabetes. The leaves are used in herbal medicine preparations. The present study was carried out to isolate and identify the putative antidiabetic compound based on bioassay-guided
OBJECTIVE Salacia oblonga, Tinospora cordifolia, Emblica offinalis Gaertn, Curcuma longa and Gymnema sylvestre are Ayurvedic medicinal plants reported to lower plasma glucose levels in animal models. To our knowledge, however, no clinical validations of those extracts for efficacy have been. The aim

Effect of Gymnema montanum leaves on serum and tissue lipids in alloxan diabetic rats.

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The effect of Gymnema montanum leaves on alloxan-induced hyperlipidemia was studied in male Wistar rats. Ethanolic extract of G. montanum leaves was administered orally and different doses of the extract on blood glucose, serum and tissue lipids, hexokinase, glucose-6-phosphatase, thiobarbituric

Antidiabetic activity of alcoholic stem extract of Gymnema montanum in streptozotocin-induced diabetic rats.

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In the present study, the effect of alcoholic stem extract of Gymnema montanum (GMSt) on blood glucose, plasma insulin, and carbohydrate metabolic enzymes were studied in experimental diabetes. Diabetes mellitus was induced by a single intraperitoneal injection of STZ (60 mg/kg bw). Five days after
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