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allicin/cancro

Il collegamento viene salvato negli appunti
Pagina 1 a partire dal 112 risultati

Allicin suppresses the migration and invasion in cervical cancer cells mainly by inhibiting NRF2.

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Emerging evidence has demonstrated the antitumor activity of allicin in various tumors. However, little study has been carried out on the functional role of allicin in cervical cancer. Our data showed that allicin suppressed cervical cancer cell viability in a time- and dose-dependent manner.
Ethanol-insoluble components were extracted from fresh garlic with 0.9% NaCl solution containing streptomycin and penicillin. This extract, containing approximately 10% sugar, 0.3% nitrogen, and 0.4% ash, was termed garlic sugar solution. This garlic sugar solution (Medium 1) was used as the

Allicin enhances the radiosensitivity of colorectal cancer cells via inhibition of NF-κB signaling pathway.

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Radioresistance is an important factor affecting the radiotherapy effect of colorectal cancer (CRC). Allicin is a versatile sulfur-containing organic compound extracted from garlic (Allium sativum L.), which has many pharmacological effects. However, the effect of allicin on the sensitivity of CRC
Drug resistance and hepatic dysfunction are the two major factors that limit the application of chemotherapy for hepatocellular carcinoma (HCC). It has been reported that allicin has the hepatic protective effect and antitumor activity. Hence allicin may be an ideal enhancer to chemotherapy regimen

Natural product inspired allicin analogs as novel anti-cancer agents.

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A series of novel analogs of Allicin (S-allyl prop-2-ene-1-sulfinothioate) present in garlic has been synthesized in high yield. Synthesized 23 compounds were evaluated against different breast cancer cells (MDA-MB-468 and MCF-7) and non-cancer cells (WI38). Four compounds (3f, 3h, 3m and 3u) showed

Effect of purified allicin, the major ingredient of freshly crushed garlic, on cancer cell proliferation.

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The diverse health benefit effects of garlic include its anticancer activity. However, very little is known about such activity of isolated garlic compounds, among which allicin (the major ingredient of crushed garlic) has been the least studied. The aim of this work was to determine whether pure

Study on the inhibitory effect of allicin on human gastric cancer cell line SGC-7901 and its mechanism.

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BACKGROUND Allicin is the main active constituent of Allium sativum L., which is characterized by broad antibacterial spectrum (MarkosN et al., 2008; Chen et al., 2008); it also has apparent inhibitory effects on a variety of tumors. The Objective of the paper is to study the inhibitory effect of

Allicin induces apoptosis in gastric cancer cells through activation of both extrinsic and intrinsic pathways.

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Allicin is an active compound derived from garlic that has been shown to have antitumor properties in vitro. The current study was designed to explore the effects and the underlying mechanism of allicin on gastric cancer cells. The MTT assay was used to detect cell viability. Transmission electron

[Effects of allicin on invasion and metastasis of colon cancer LoVo cell line in vitro].

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OBJECTIVE To study the effect of allicin on invasion and metastasis of human colon cancer cell line LoVo in vitro and furthermore elucidate its anticancer mechanisms. METHODS MTT assay was used to test dynamically the effect of cell growth inhibition. The inhibitory effects of allicin on movement,

Allicin induces anti-human liver cancer cells through the p53 gene modulating apoptosis and autophagy.

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Hepatocellular carcinoma (HCC) is the most prevalent type of liver cancer globally and ranks first among the cancer-related mortalities in Taiwan. This study aims to understand the modes of cell death mechanism induced by allicin, a major phytochemical of crushed garlic, in human hepatoma cells. Our
Background. Allicin, the major component of freshly crushed garlic, is one of the most biologically active compounds of garlic; it has been reported to induce apoptosis in cancer cells; however, the mechanism by which allicin exerts its apoptotic effects is not fully understood. The aim of the
OBJECTIVE Gastric cancer is one of the most common causes of cancer-related death worldwide. Medicinal plants are one of the main sources for discovery of new pharmacological agents especially for treatment of cancers. The aim of the present study is to review pharmacotherapeutic aspects of three
Allicin, a highly active component from freshly crushed garlic, is produced upon the reaction of the small molecular weight molecule alliin, with the enzyme alliinase (EC 4.4.1.4). Because allicin was shown to be toxic to various mammalian cells in vitro, we devised a novel approach for the therapy

Allicin (from garlic) induces caspase-mediated apoptosis in cancer cells.

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Garlic (Allium sativum) has been used for centuries for treating various ailments, and its consumption is said to reduce cancer risk and its extracts and components effectively block experimentally induced tumors. Allicin, the major component present in freshly crushed garlic, is one of the most

Inhibition of tumor growth by a novel approach: in situ allicin generation using targeted alliinase delivery.

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Allicin (diallyl thiosulfinate), a highly active component in extracts of freshly crushed garlic, is the interaction product of non-protein amino acid alliin (S-allyl-L-cysteine sulfoxide) with the enzyme alliinase (alliin lyase; EC 4.4.1.4). Allicin was shown to be toxic in various mammalian cells
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