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anoectochilus/triglyceride

Линкът е запазен в клипборда
СтатииКлинични изследванияПатенти
11 резултата

Hepatoprotective and antihyperliposis activities of in vitro cultured Anoectochilus formosanus.

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The pharmacological effects of an aqueous extract of the whole plants of in vitro cultured Anoectochilus formosanus were investigated experimentally for hepatoprotective and antihyperliposis activities. The extract showed significant antihepatotoxic activity against carbon tetrachloride induced

Pharmacologically active compounds in the Anoectochilus and Goodyera species.

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The extract of Anoectochilus formosanus showed significant activity in decreasing the levels of the cytosolic enzymes LDH, GOT, and GPT, and the result demonstrated that A. formosanus possessed prominent hepatoprotective activity against CCl(4)-induced hepatotoxicity. Moreover, in the results of the

Effect of in vitro cultured Anoectochilus formosanus on lipid metabolism in clinical uses.

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A clinical study was performed on the effect of in vitro cultured Anoectochilus formosanus HAYATA on lipid-metabolism. Sixty-six volunteers, including 36 healthy, 14 high-triglyceride-, 11 high-cholesterol- and 5 high-triglyceride- and high cholesterol- subjects, were administrated with A.

Antihyperglycaemic and anti-oxidant properties of Anoectochilus formosanus in diabetic rats.

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1. In the present study, we investigated aqueous extracts of Anoectochilus formosanus (AFE) for antihyperglycaemic and anti-oxidant effects in diabetic rats induced by streptozotocin (STZ). 2. Diabetic rats were randomly divided into groups and treated orally by gavage with vehicle (distilled water)

Protective effect of Anoectochilus roxburghii polysaccharide against CCl4-induced oxidative liver damage in mice.

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This study investigated the isolation and characterization of Anoectochilus roxburghii polysaccharides (ARP), and further evaluated whether ARP possessed hepatoprotective activities against CCl4-induced oxidative liver damage in mice. ARP is comprised of glucose and galactose in a 1.9:1 molar ratio,

Antihyperglycemic activity of Anoectochilus roxburghii polysaccharose in diabetic mice induced by high-fat diet and streptozotocin.

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BACKGROUND Anoectochilus roxburghii is a traditional Chinese herb used for treatment of diabetes and some other diseases. Anoectochilus roxburghii polysaccharose (ARP) is the main constituent of Anoectochilus roxburghii. The present study aimed to investigate the antidiabetic effects of ARP in

Antihyperglycemic and antioxidant activity of water extract from Anoectochilus roxburghii in experimental diabetes.

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The hypoglycemic and antioxidant effects of the water extract from Anoectochilus roxburghii in alloxan-induced diabetic mice were examined. Compared with untreated diabetic mice, the daily oral administration of the water extract from A. roxburghii at 0.5 or 2 g/kg for 14 days caused a significant

Antidiabetic activities of polysaccharides from Anoectochilus roxburghii and Anoectochilus formosanus in STZ-induced diabetic mice.

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Six polysaccharides were extracted from different parts (whole plants, roots and leaves) of Anoectochilus roxburghii and Anoectochilus formosanus (ARPs, ARPs-1, ARPs-2, AFPs, AFPs-1 and AFPs-2). Their primary characteristics were identified and their antidiabetic activities were evaluated in

Higher yielding isolation of kinsenoside in Anoectochilus and its antihyperliposis effect.

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A higher concentration of kinsenoside, 3-(R)-3-beta-D-glucopyranosyloxybutanolide (1), was detected in the crude drug Anoectochilusformosanus, and A. koshunensis by HPLC analysis. A methylation reaction occurred to give methyl ester (4) when the lactone ring of 1 was cleaved by silica gel catalysis

Synergistic effects of cAMP-dependent protein kinase A and AMP-activated protein kinase on lipolysis in kinsenoside-treated C3H10T1/2 adipocytes.

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We previously showed that 3-O-β-D-glucopyranosyl-(3R)-hydroxybutanolide (kinsenoside), a major compound of Anoectochilus formosanus, increased lipolysis through an AMP-activated protein kinase (AMPK)-dependent pathway.To extend our previous finding, we

Kinsenoside-mediated lipolysis through an AMPK-dependent pathway in C3H10T1/2 adipocytes: Roles of AMPK and PPARα in the lipolytic effect of kinsenoside.

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BACKGROUND Currently, more than one-third of the global population is overweight or obese, which is a risk factor for major causes of death including cardiovascular disease, numerous cancers, and diabetes. Kinsenoside, a major active component of Anoectochilus formosanus exhibits antihyperglycemic,
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