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akebia quinata/злокачественная опухоль

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14 полученные результаты

[Professor Ling Changquan's experience in treating primary liver cancer: an analysis of herbal medication].

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On the basis of outpatients' medical records concerning primary liver cancer (PLC), data of 552 patients (with 2020 effective prescriptions) from the Outpatient Department of Changhai Hospital treated by Professor Ling Changquan were collected. The nature, flavor and meridian distribution of the

A study on the extraction process of active ingredients from Akebia Stem and an analysis of their anti-gastric cancer activity.

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The study investigated the extraction process of active ingredients from akebia stem and an analysis of their anti-gastric cancer activity. Three different extraction methods were used to obtain extracts, namely the decoction method (group A), reflux extraction method (group B), and maceration

Structure-activity relationship of oleanane disaccharides isolated from Akebia quinata versus cytotoxicity against cancer cells and NO inhibition.

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In order to further determine the nature of structure-activity relationship on the cytotoxicities of saponins with 1-->2 and 1-->3 linkages of disaccharides, we isolated guaianin N, collinsonidin, kalopanaxsaponin A and hederoside D(2) as disaccharides, and patrinia glycoside B-II as a

Akebia saponin PA induces autophagic and apoptotic cell death in AGS human gastric cancer cells.

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In this study, we investigated the anticancer mechanism of akebia saponin PA (AS), a natural product isolated from Dipsacus asperoides in human gastric cancer cell lines. It was shown that AS-induced cell death is caused by autophagy and apoptosis in AGS cells. The apoptosis-inducing effect of AS

Protein Tyrosine Phosphatase 1B Inhibitors from the Stems of Akebia quinata.

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PTP1B deficiency in mouse mammary tumor virus (MMTV)-NeuNT transgenic mice inhibited the onset of MMTV-NeuNT-evoked breast cancer, while its overexpression was observed in breast cancer. Thus, PTP1B inhibitors are considered chemopreventative agents for breast cancer. As part of our program to find

Antioxidative and Anti-Inflammatory Activities of Akebia quinata Extracts in an In Vitro Model of Acute Alcohol-Induced Hepatotoxicity.

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This study investigated the effects of Akebia quinata (AQ) leaf and fruit extract on acute alcohol-induced hepatotoxicity in AML12 cells. Different concentrations of AQ extracts (250 and 2500 μg/mL) were used to treat the AML12 cells with or without ethanol for 24 h for inducing acute alcohol

Inhibitory effects of Akebia quinata ethanol extract on TNF-α-mediated vascular inflammation in human aortic smooth muscle cells.

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Atherosclerosis is a chronic inflammatory disease of the arterial wall. The expression of adhesion molecules in aortic smooth muscle cells facilitates the accumulation of transmigrated leukocytes within the atherosclerotic vascular wall. The stem of Akebia quinata (A. quinata) has previously been

Three new lignan glycosides with IL-6 inhibitory activity from Akebia quinata.

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Three new lignan glycosides, akeqintoside A [(7S,8S)-7,8-dihydro-8-hydroxymethyl-7-(4-hydroxy-3-methoxyphenyl)-1'-benzofuranpropanol 2'-O-β-D-glucopyranoside] (1), akeqintoside B [(7R,8R)-7,8-dihydro-8-hydroxymethyl-7-(4-hydroxy-3-methoxyphenyl)-1'-(9'-methoxy-7'-propenyl) benzofuran

Akebia saponin E, as a novel PIKfyve inhibitor, induces lysosome-associated cytoplasmic vacuolation to inhibit proliferation of hepatocellular carcinoma cells

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Ethnopharmacological relevance: Hepatocellular carcinoma (HCC) is an aggressive malignancy with increasing mortality in China. Screening and identifying effective anticancer compounds from active traditional Chinese herbs for HCC are in

Akebia trifoliata pericarp extract ameliorates inflammation through NF-κB/MAPK signaling pathways and modifies gut microbiota.

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Akebia trifoliata fruits, a kind of popular edible berry in Asia, are widely consumed as daily fruits or functional foods. Our previous study found several bioactives from Akebia trifoliata pericarp extract (APE), and preliminarily investigated their anti-inflammatory activity. However, the

Bioactive 30-noroleanane triterpenes from the pericarps of Akebia trifoliata.

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Two new 30-noroleanane triterpenes, 2α,3β,20α-trihydroxy-30-norolean-12-en-28-oic acid (1), 2α,3β-dihydroxy-23-oxo-30-norolean-12,20(29)-dien-28-oic acid (2), were isolated from the pericarps of Akebia trifoliata, together with four known ones, 3β-akebonoic acid (3),

Two New Pentacyclic Triterpene Saponins from the Leaves of Akebia trifoliata.

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Two new pentacyclic triterpene saponins, named akebiaoside K (1) and akebiaoside N (2), were isolated from the leaves of Akebia trifoliata, together with five known triterpenoids 3-7. They were all isolated from the leaves of A. trifoliata for the first time. Their structures were established by

[Advances in the study on medicinal plants of Akebia].

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The progress in the studies on chemical constituents, quality control and pharmacological activity of Akebia plants is summarized in recent years. These plants contain various chemical constituents and have broad bioactivities such as diuresis, anti-tumor and antibacteria and should be further

Akebia Saponin D attenuates amyloid β-induced cognitive deficits and inflammatory response in rats: involvement of Akt/NF-κB pathway.

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Neuroinflammatory responses caused by amyloid β(Aβ) play an important role in the pathogenesis of Alzheimer's disease (AD). Aβ is known to be directly responsible for the activation of glial cells and induction of apoptosis. Akebia Saponin D (ASD) is extracted from a traditional herbal medicine
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