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diallyl sulfide/лук

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Neuroprotective effects of diallyl sulfide against transient focal cerebral ischemia via anti-apoptosis in rats.

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OBJECTIVE Diallyl sulfide (DAS) is the main organosulfur component of garlic and it is known for multiple pharmacological actions. Recent studies have demonstrated that DAS has neuroprotective effects against ischemia/reperfusion injury. While some of the possible mechanisms behind this protection

Diallyl sulfides in garlic activate both TRPA1 and TRPV1.

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We searched for novel agonists of TRP receptors especially for TRPA1 and TRPV1 in foods. We focused attention on garlic compounds, diallyl sulfide (DAS), diallyl disulfide (DADS), and diallyl trisulfide (DATS). In TRPA1 or TRPV1 heterogeneously expressed CHO cells, all of those compounds increased

Effect of diallyl sulfide on rat liver microsomal nitrosamine metabolism and other monooxygenase activities.

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It has been reported that p.o. administration of diallyl sulfide (DAS), a naturally occurring component of garlic (Allium sativum), inhibits 1,2-dimethylhydrazine-induced colon and liver cancer in rodents. A possible mechanism for this protective effect is inhibition of hepatic activation of the

Chemoprevention of N-nitrosomethylbenzylamine-induced esophageal cancer in rats by the naturally occurring thioether, diallyl sulfide.

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Diallyl sulfide (DAS) is a principal thioether of garlic (Allium sativum) accounting, in part, for the flavor and fragrance of this herb. Previous studies have shown that DAS is a potent inhibitor of experimentally induced colon cancer in mice. Metabolic studies of other garlic-derived substances

Effects of garlic components diallyl sulfide and diallyl disulfide on arylamine N-acetyltransferase activity in human bladder tumor cells.

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Diallyl sulfide (DAS) and diallyl disulfide (DADS) were used to determine viability and inhibition of arylamine N-acetyltransferase (NAT) activity in human bladder tumor cells. The NAT activity was measured by high performance liquid chromatography assaying for the amounts of

Decrease of hepatic catalase level by treatment with diallyl sulfide and garlic homogenates in rats and mice.

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Diallyl sulfide (DAS) is a flavor compound derived from garlic and is active in the inhibition of chemically induced cytotoxicity and carcinogenicity in animal models. This study was conducted to examine the effects of the treatment of DAS and garlic homogenates on the activities of catalase,

Diallyl sulfide induces growth inhibition and apoptosis of anaplastic thyroid cancer cells by mitochondrial signaling pathway.

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Anaplastic thyroid carcinoma (ATC) is one of the most lethal solid tumors arising thyroid gland with dismal prognosis. One of the constituents of garlic, diallyl sulfide (DAS) was shown to inhibit chemically induced carcinogenesis in many animal models. This study examined whether DAS could induce

Cytotoxicity and genotoxicity of diallyl sulfide and diallyl disulfide towards Chinese hamster ovary cells.

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Two compounds found in garlic, diallyl sulfide (DAS) and diallyl disulfide (DDS), were tested for cytotoxic and genotoxic effects in a Chinese hamster ovary cell line. DDS was found to be more cytotoxic than DAS (showing a Dq of 1.6 micrograms/ml and a D0 of 0.6 microgram/ml as opposed to values of

Role of ornithine decarboxylase in diallyl sulfide inhibition of colonic radiation injury in the mouse.

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Diallyl sulfide (DAS), a major flavor component of garlic (Allium sativum) that has previously been shown to inhibit colon carcinogenesis in experimental animals, was investigated for its ability to reduce acute colonic mucosal injury following gamma-ray exposure. Female C57BL/6J mice received

Antitumour activity of diallyl sulfide on polycyclic aromatic hydrocarbon-induced mouse skin carcinogenesis.

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Diallyl sulfide (DAS), a major flavour component of garlic, is known to modulate xenobiotic metabolism and possess antitoxic, bactericidal, antineoplastic, hypolipidemic and hypocholesteromic effects. In the present study, the anticarcinogenic activity of DAS on a 7,12-dimethylbenzanthracene (DMBA)-

Enhancing effects of diallyl sulfide on hepatocarcinogenesis and inhibitory actions of the related diallyl disulfide on colon and renal carcinogenesis in rats.

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It has been reported that diallyl sulfide (DS) and diallyl disulfide (DDS), major volatile compounds in garlic (Allium sativum), exert anticarcinogenic activity in several organs in rodents. The modifying effects of these two chemicals were therefore assessed using two-step liver and multi-organ

Relaxant effect of diallyl sulfide on nonpregnant rat uterus: Involvement of voltage-dependent calcium channels

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Aim: We aimed to determine the effect and mechanism of action of diallyl sulfide (DAS), an active component of sulfur-containing foods such as garlic on rat uterine activity. Methods:

Antitumor activity of diallyl sulfide in two-stage mouse skin model of carcinogenesis.

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It has been reported that diallyl sulfide (DAS), a sulfur-containing volatile compound in garlic (Allium sativum), exerts anticarcinogenic activity in various rodent tumor models. In the present study, the antitumor property of DAS was tested in Swiss albino mice in the two stage

Effect of diallyl sulfide on MNNG-induced nuclear aberrations and ornithine decarboxylase activity in the glandular stomach mucosa of the Wistar rat.

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In previous investigations using models for gastrointestinal cancer, the anticarcinogenic effects of diallyl sulfide (DAS), an organosulfur compound present in garlic, was established. In this study, we conducted experiments to determine whether DAS modulates two biomarkers, nuclear aberrations (NA)

Protective effects of diallyl sulfide on N-nitrosodimethylamine-induced immunosuppression in mice.

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Diallyl sulfide (DAS), a flavor component of garlic that has been used as a food additive, exerts chemopreventive effects at several organ sites in rodents after administration of chemical carcinogens possibly by inhibiting carcinogen activation via cytochrome P450-mediated oxidative metabolism. In
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