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alpha hederin/nowotwór złośliwy

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ArtykułyBadania klinicznePatenty
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α-Hederin, a monodesmosidic triterpenoid saponin, exhibited promising antitumor potential against a variety of human cancer cell lines. However, few related studies about effects of α-hederin on gastric cancer are available. Herein, our results showed that α-hederin significantly inhibited the

α-Hederin Arrests Cell Cycle at G2/M Checkpoint and Promotes Mitochondrial Apoptosis by Blocking Nuclear Factor-κB Signaling in Colon Cancer Cells.

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Colon cancer represents the third most common malignancy worldwide. New drugs with high efficaciousness and safety for the treatment of colon cancer are urgently needed in clinical context. Here, we were aimed to evaluate the antitumor activity of the natural compound α-hederin in human colon cancer

The anticancer effect and mechanism of α-hederin on breast cancer cells.

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Natural plant products occupy a very important position in the area of cancer chemotherapy. Many triterpenoid saponins have been proved as potential agents for chemoprevention and therapy of breast cancer. α-hederin, a monodesmosidic triterpenoid saponin distributed in Hedera or Nigella species,

Combining α-Hederin with cisplatin increases the apoptosis of gastric cancer in vivo and in vitro via mitochondrial related apoptosis pathway.

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Cisplatin is a type of broad-spectrum anti-carcinogen that has been widely used in anti-gastric cancer therapy. Drug resistance prevails in gastric cancer therapy. α-Hederin has been reported to exert anti-tumour ability by inducing apoptosis in many cancers in vitro and in vivo. A

Modes of action of alpha-hederin and thymoquinone, active constituents of Nigella sativa, against HEp-2 cancer cells.

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Our previous studies on active constituents of Nigella sativa have indicated that cell death induced by thymoquinone and alpha-hederin was dose- and time-dependent, in a range of four cancer cell lines. Both compounds elicited necrosis and apoptosis with a higher incidence of the latter induced by

α-hederin induces autophagic cell death in colorectal cancer cells through reactive oxygen species dependent AMPK/mTOR signaling pathway activation.

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α‑hederin, a monodesmosidic triterpenoid saponin, had previously demonstrated strong anticancer effects. In the current study, the pharmacological mechanism of autophagic cell death induced by α‑hederin was investigated in human colorectal cancer cells. First, through cell counting kit‑8 and colony

Effects of alpha-hederin and thymoquinone, constituents of Nigella sativa, on human cancer cell lines.

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The separate effects of alpha-hederin and thymoquinone, the two principal bioactive constituents of Nigella sativa, on four human cancer cell lines [A549 (lung carcinoma), HEp-2 (larynx epidermoid carcinoma), HT-29 (colon adenocarcinoma) and MIA PaCa-2 (pancreas carcinoma)] were investigated.
Colon cancer is the third most frequently diagnosed malignancy and has high morbidity worldwide. Epithelial-mesenchymal transition (EMT) has been increasingly implicated in colon cancer progression and metastasis. The present study was aimed to evaluate the potential antitumor activity of α-hederin,
An antibody that specifically interacts with an antigen could be applied to an active targeting delivery system. In this study, CD147 antibody was coupled with α-hed chitosan nanoparticles (α-Hed-CS-NPs). α-Hed-CS-CD147-NPs were round and spherical in shape, with an average particle size of 148.23 ±

Effects of alpha-hederin, a saponin extracted from Hedera helix, on cells cultured in vitro.

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In this work, we have analysed the effects of alpha-hederin, a monodesmosidic triterpenoid saponin isolated from Hedera helix, on mouse B16 melanoma cells and non-cancer mouse 3T3 fibroblasts cultured in vitro. Our results indicate that, in a serum-free medium, alpha-hederin is cytotoxic and

Mitochondrial pathway mediated by reactive oxygen species involvement in α-hederin-induced apoptosis in hepatocellular carcinoma cells.

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OBJECTIVE To investigate the antitumor activity of α-hederin in hepatocellular carcinoma (HCC) cells and its underlying mechanisms in vitro and in vivo. METHODS SMMC-7721, HepG-2 and Huh-7 HCC cells were cultured in vitro and treated with α-hederin (0, 5 μmol/L, 10 μmol/L, 15 μmol/L, 20 μmol/L, 25

Extraction, isolation and characterisation of antitumor principle, alpha-hederin, from the seeds of Nigella sativa.

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We have previously reported the in vitro cytotoxic activity of column fraction 5 (CC-5) of an ethanolic extract of Nigella sativa seeds. In this study, the effect of CC-5 was evaluated for its in vivo antitumor activity against i.p. (intraperitoneally) implanted murine P388 leukemia and s.c.

Alpha-hederin potentiates 5-FU antitumor activity in human colon adenocarcinoma cells.

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The aim of this study was to investigate the ability of alpha-hederin to improve the efficacy of widely prescribed 5-fluorouracil (5-FU) in a human colon adenocarcinoma model. Drug combinations of alpha-hederin and 5-FU using both fixed-concentration and combination index methods were performed in

Kalopanaxsaponin A is a basic saponin structure for the anti-tumor activity of hederagenin monodesmosides.

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Hederagenin, delta-hederin [hederagenin alpha-L-arabinoside], kalopanax-saponin A [hederagenin 3-O-alpha-L-rhamnosyl(1-->2)-alpha-L- arabinoside], kalopanaxsaponin I [hederagenin 3-O-beta-D-xylosyl(1-->3)-alpha-L- rhamnosyl(1-->2)-alpha-L-arabinoside], and sapindoside C [hederagenin
Black cumin (Nigella sativa) is a spice having medicinal properties with pungent and bitter odour. It is used since thousands of years to treat various ailments, including cancer mainly in South Asia and Middle Eastern regions. Substantial evidence in multiple research studies emphasizes about the
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