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The Effect of Phytochemicals on Biochemical Mechanisms R

The Effect of Phytochemicals on Biochemical Mechanisms R
植物化学物质对生化机制的影响 R
批准号:
6761402
负责人:
GRACE YEH
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
大量证据表明富含水果和蔬菜的饮食可以预防或延缓各种癌症,包括乳腺癌、前列腺癌和肾癌。然而,负责这一过程的植物成分(植物化学物质)及其作用机制仍有待阐明。在本节的主要项目中,我们研究了一些植物化学物质对与致癌有关的各种生化机制的影响。研究的植物化学物质包括存在于所有水果和蔬菜中的类黄酮。其中包括从柑橘类水果中提取的薯蓣皂苷,所有可食用植物中含量最多的类黄酮槲皮素,以及槲皮素的代谢物高良姜和山奈酚。其他植物化学物质包括b-二酮类姜黄素和二苯甲酰甲烷,以及白藜芦醇,一种存在于葡萄皮中的植物抗菌素,因此也存在于葡萄汁和葡萄酒中。在动物癌症模型中,所有这些化合物都被证明具有化学预防作用,流行病学研究表明,含有大量这些化合物的食物与降低患癌症的风险有关。
英文摘要
Numerous lines of evidence have shown that diets rich in Numerous lines of evidence have shown that diets rich in fruits and vegetables prevent or slow various types of cancers, including breast, prostate, and kidney cancers. However, the plant constituents (phytochemicals) responsible for this, and their mechanisms of action, remain to be elucidated. In this, the major project of the Section, we have examined the effect of a number of phytochemicals on various biochemical mechanisms relevant to carcinogenesis. The phytochemicals studied include the flavonoids, which are present in all fruits and vegetables. These include diosmin, from citrus fruit, quercetin, the most abundant flavonoid which is present in all dietary plants, and galangin and kaempferol, metabolites of quercetin. Other phytochemicals include the b-diketones curcumin and dibenzoylmethane, and resveratrol, a phytoalexin present in grape skins and therefore in grape juice and wine. All of these compounds have been shown to be chemopreventive in animal models of cancer, and epidemiologic studies have shown that food items containing large amounts of these compounds are associated with a reduced risk of cancer. There are many biochemical and molecular events associated with the development of cancer. One of the most important pathways is mediated by the aryl hydrocarbon receptor (AhR). The AhR is a cytoplasmic transcription factor which, upon ligand binding, translocates to the nucleus, where, with its protein partner ARNT, it interacts with the xenobiotic responsive element (XRE) present in the promoter region of a number of genes. The best characterized molecular response to ligands of the AhR is the induction of expression of cytochrome P450 1A1 (CYP1A1). CYP1A1 is a Phase 1 metabolic enzyme which activates environmental procarcinogens to their ultimate genotoxic forms. In addition to CYP1A1, the AhR controls a number of other genes, termed the "AhR battery", which affect both the activation and detoxification of carcinogens. We have concentrated on the Phase 1, or activating, enzymes, including CYP1A1, CYP1B1, and CYP1A2. We have also examined the effect phytochemicals on quinone reductase, a Phase 2, or detoxifying, enzyme, that is part of the AhR battery. In carrying out this research, we have done both in vitro experimentation in a variety of cell lines, as well as in vivo experimentation in rodents. We have examined how certain phytochemicals affect the activity of the AhR, including its ability to bind carcinogenic ligands and to interact with the XRE. We have examined the transcriptional activation of CYP1A1 and determined the effect of chemopreventive compounds on the expression and enzymatic activity of CYP1A1, CYP1B1, and CYP1A2. We have studied a number of environmental carcinogens which bind to the AhR, such as benzo[a]pyrene (BP), a polycyclic aromatic hydrocarbon (PAH) that is a potent environmental carcinogen present in cooked meat, cigarettes, and as by-products of industrial waste. We have also examined 2,3,5,7-tetrachlorodibenzo-p-dioxin(TCDD), a member of the dioxin family of potent carcinogens and the prototypical AhR ligand. We have found that many dietary phytochemicals modulate the cellular response to environmental carcinogens by affecting the AhR. For example, we demonstrated that resveratrol inhibits both the activity and expression of CYP1A1 that is normally induced by carcinogens such as TCDD or BP. It does this by blocking the binding of the ligand-activated AhR with the XRE of the CYP1A1 promoter, preventing the up-regulation of transcription. In addition, it directly inhibits enzymatic activity by a competitive mechanism. Thus, this dual mechanism of inhibiting the major carcinogen activating enzyme in most tissues provides a biochemical mechanism for its proven chemopreventive effect. We have also found that AhR activity is modulated by curcumin, dibenzoylmethane, quercetin, diosmin, and a number of other phytochemicals. We are currently investigating the effect of these compounds on other mechanisms involved in carcinogenesis, including the modulation of expression of g-glutamyltranspeptidase and telomerase. In order to identify further molecular targets of phytochemicals, we are also utilizing microarray technology. We have also examined the effects of other chemopreventive compounds which are not phytochemicals, on the AhR. These include the steroid hormone dehydroepiandrosterone and the nonsteroidal anti-inflammatant drug, sulindac.
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The Effect of Phytochemicals on the Carcinogen Activation Pathway Mediated by th
Dietary Regulation of Biochemical/Molecular Changes in Carcinogen Resistant Cells
Dietary Regulation of BiochemicalMolecular Changes in Carcinogen Resistant Cells
THE EFFECT OF PHYTOCHEMICALS ON THE CARCINOGEN ACTIVATION PATHWAY MEDIATED BY THE
国内基金
海外基金
P-glycoprotein与Rack1和Src相互作用并促进耐药乳腺癌细胞侵袭转移的分子机制研究
  • 批准号:
    81472474
  • 项目类别:
    面上项目
  • 资助金额:
    85.0万元
  • 批准年份:
    2014
  • 负责人:
    张飞
  • 依托单位: