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physalis turbinatoides/triglyceride

Веза се чува у привремену меморију
ЧланциКлиничка испитивањаПатенти
6 резултати

Bioactivity-guided fractionation of the triglyceride-lowering component and in vivo and in vitro evaluation of hypolipidemic effects of Calyx seu Fructus Physalis.

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BACKGROUND In folklore, some people take the decoction of Calyx seu Fructus Physalis (CSFP) for lowering blood lipids. The present study is designed to evaluate the lipid-lowering activities of CSFP, and search for its pharmacodynamical material. METHODS CSFP was extracted by water and 75% ethanol,

Extraction and isolation of important bioactive compounds from the fruit of Physalis ixocarpa.

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The current study investigates pharmaceutically important bioactive compounds in the fruits of Physalis ixocarpa. Two different extractions methods were used to study its effect on percent extract yield, recovery of bioactive compounds and antioxidant activity of the extracts. The data indicated

Effect of some medicinal plants on plasma antioxidant system and lipid levels in rats.

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Several inflammatory diseases are thought to be related to oxidative injury and free oxygen radicals have been proposed as important causative agents of heart disease and aging. To investigate the effects of daily intake of medicinal plants on antioxidant enzymes, lipid peroxidation and lipid

Physalis alkekengi Exhibits Antiobesity Effects in Mice with Potential of Inducing White Adipose Tissue Browning.

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The aim of this study was to investigate the efficacy of an ethanol extract of Physalis alkekengi (PA) and its mechanistic pathway of action at the molecular level for its antiobesity properties. Four-week old male Institute of Cancer Research (ICR) mice were acclimatized for a week before

Evaluation of in vitro/in vivo anti-diabetic effects and identification of compounds from Physalis alkekengi.

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The aims of the present study were to assess the anti-diabetic effects of Physalis alkekengi L. (PA) in 3T3-L1 pre-adipocyte cells and HepG2-GFP-CYP2E1 (E47) cells and in a pre-diabetic rat model, as well as to identify the active chemical constituents. The in vitro results showed that PA has a

Antidiabetic potential of the ethyl acetate extract of Physalis alkekengi and chemical constituents identified by HPLC-ESI-QTOF-MS.

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BACKGROUND The edible plant Physalis alkekengi (PA) is used in traditional medicine to treat diabetes. However, the anti-diabetic effects and constituents of the fruit and aerial parts of this plant have not been studied extensively. OBJECTIVE The purpose of this study was to investigate the
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