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ginsenoside rg 1/panax

Врската е зачувана во таблата со исечоци
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Angiogenic evaluation of ginsenoside Rg 1 from Panax ginseng in fluorescent transgenic mice.

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BACKGROUND Evaluation of angiogenesis-inducing compounds is essential in tissue engineering to develop biological substitutes for the repair or regeneration of tissue function. In this report, we evaluated the angiogenic ability of ginsenoside Rg 1 from Panax ginseng, in Matrigel implanted on

Enhancement of ginsenoside Rg(1) in Panax ginseng hairy root by overexpressing the α-L-rhamnosidase gene from Bifidobacterium breve.

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OBJECTIVE To improve the production of ginsenoside Rg1 in Panax ginseng. RESULTS The α-L-rhamnosidase gene from Bifidobacterium breve (BbRha) was overexpressed into hairy root culture system using Agrobacterium rhizogenes A4. Ginsenoside Rg1 in hairy roots was obtained following transformation via

Triterpene saponins from Vietnamese ginseng (Panax vietnamensis) and their hepatocytoprotective activity.

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The methanol extract of Vietnamese ginseng (Panax vietnamensis) was found to possess hepatocytoprotective effects on D-galactosamine (D-GalN)/tumor necrosis factor-alpha (TNF-alpha)-induced cell death in primary cultured mouse hepatocytes. Further chemical investigation of the extract afforded two

Protopanaxadiol 6-hydroxylase and its role in regulating the ginsenoside heterogeneity in Panax notoginseng cells.

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Various structure-similar plant secondary metabolites like ginseng saponins (ginsenosides) possess different or even totally opposite biological activities. Intentional manipulation of the ginsenoside heterogeneity in cellular biosynthesis is of great interest and significance [Zhong and Yue (2005);

Simultaneous determination of saponins in flower buds of Panax notoginseng using high performance liquid chromatography.

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The flower buds of Panax notoginseng have been commonly used for the treatment of hypertension, vertigo, tinnitus and acute faucitis in China. The amount of total saponins in the flower buds is higher than in any other parts of P. notoginseng. However, the compositions of flower buds have not been

Antihepatocarcinoma activity of lactic acid bacteria fermented Panax notoginseng.

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Panax notoginseng was used as the medium for lactic acid bacteria fermentation to manufacture product with antihepatocarcinoma activity. The fermentation broth prepared in a 250 mL Erlenmeyer flask was found to possess antiproliferation activity against hepatoma Hep3B cells. At the dosage of 500

Pharmacokinetics and bioavailability of ginsenoside Rb1 and Rg1 from Panax notoginseng in rats.

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Panax notoginseng is used as a therapeutic agent to stop haemorrhages and a tonic to promote health in Chinese medicine. Currently saponins of P. notoginseng (PNS) are especially given attentions for their hemorheological properties. The pharmacokinetic profiles of the main PNS are still not

Enzymatic preparation of ginsenosides Rg2, Rh1, and F1 from protopanaxatriol-type ginseng saponin mixture.

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During investigations on the hydrolysis of a protopanaxatriol-type saponin mixture by various glycoside hydrolases, it was found that two minor saponins, ginsenosides Rg 2 and Rh 1, were formed in high yields by crude beta-galactosidase from Aspergillus oryzae and crude lactase from Penicillium sp.,

Stability of angiogenic agents, ginsenoside Rg1 and Re, isolated from Panax ginseng: in vitro and in vivo studies.

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The study was designed to investigate the stability of ginsenoside Rg(1) (Rg(1)) and Re (Re), two natural herbal compounds isolated from Panax ginseng, based on their activity to promote angiogenesis in vitro and in vivo. After being treated at different temperatures, pHs, and solvent species for

A method of extracting ginsenosides from Panax ginseng by pulsed electric field.

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The objective of this study was to develop and optimize a pulsed electric field (PEF) extraction method. Various experimental conditions, including electric field intensity and frequency, were evaluated against extraction methods. The content of six major ginsenosides (Rg(1), Re, Rb(1), Rc, Rb(2),

Utilization study of stems and leaves of Tienchi Ginseng. I. Anti-hypertensive effect of stems and leaves of Tienchi Ginseng on stroke-prone spontaneously hypertensive rat (SHRSP).

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Tienchi ginseng tea was prepared from stems and leaves of Tienchi ginseng which is a special product in China. The increase in systolic blood pressure (SBP) was significantly inhibited by the consumption of a 4% this tea solution as drinking water from the prehypertensive stage (6 weeks of age) in

The retention behavior of ginsenosides in HPLC and its application to quality assessment of Radix Ginseng.

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This study systematically investigated the retention behavior of seven neutral ginsenosides Rg(1), Re, Rf, Rb(1), Rb(2), Rc, Rd, and an acidic ginsenoside R(0), the major pharmacologically active components of Radix Ginseng with RP-HPLC. The effects of solvent, pH value, ionic strength of the mobile

The retention behavior of ginsenosides in HPLC and its application to quality assessment of Radix Ginseng.

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This study systematically investigated the retention behavior of seven neutral ginsenosides Rg(1), Re, Rf, Rb(1), Rb(2), Rc, Rd, and an acidic ginsenoside R(0), the major pharmacologically active components of Radix Ginseng with RP-HPLC. The effects of solvent, pH value, ionic strength of the mobile

Understory light and root ginsenosides in forest-grown Panax quinquefolius.

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The objective of this study was to determine the relationship between light levels in the understory of a broadleaf forest and the content of six ginsenosides (Rg(1), Re, Rb(1), Rc, Rb(2,) and Rd) in 1- and 2-year-old American ginseng (Panax quinquefolius L.) roots. Our results revealed that

In vitro anti-cancer activity and structure-activity relationships of natural products isolated from fruits of Panax ginseng.

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OBJECTIVE Panax ginseng and its extracts have long been used for medical purposes; there is increasing interest in developing ginseng products as cancer preventive or therapeutic agents. The present study was designed to determine biological structure-activity relationships (SAR) for saponins
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