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首页> 外文期刊>Genes and Nutrition >Metabolism of tocotrienols in animals and synergistic inhibitory actions of tocotrienols with atorvastatin in cancer cells
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Metabolism of tocotrienols in animals and synergistic inhibitory actions of tocotrienols with atorvastatin in cancer cells

机译:动物中生育三烯酚的代谢以及生育三烯酚与阿托伐他汀在癌细胞中的协同抑制作用

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Tocotrienols (T3s), members of the vitamin E family, exhibit potent anti-cancer, anti-oxidative, anti-inflammatory, and some other biological activities. To better understand the bioavailability and metabolism of T3s, T3s and their metabolites were identified in urine and fecal samples from mice on diet supplemented with mixed T3s using HPLC/electrochemical detection and liquid chromatography electrospray ionisation mass spectrometry (LC–ESI–MS). Whereas the short-chain metabolites carboxyethyl hydroxychromans (CEHCs) and carboxymethylbutyl hydroxychromans (CMBHCs) were the major metabolites of T3s, several new metabolites with double bonds were also identified. Similar to tocopherols, the majority of T3 metabolites were excreted as sulfate/glucuronide conjugates in mouse urine. The distribution of γ- and δ-T3 and γ-T3 metabolites were also determined in different organs as well as in urine and fecal samples from mice on diets supplemented with corresponding T3s. The synergistic anti-cancer actions of γ-T3 and atorvastatin (ATST) were studied in HT29 and HCT116 colon cancer cell lines. The combination greatly potentiated the ability of each individual agent to inhibit cancer cell growth and to induce cell cycle arrest and apoptosis. The triple combination of γ-T3, ATST, and celecoxib exhibited synergistic actions when compared with any double combination plus the third agent. Mechanistic studies revealed that the synergistic actions of γ-T3 and ATST could be attributed to their mediation of 3-hydroxy-3-methyl-glutaryl-CoA reductase, and the subsequent inhibition of protein geranylgeranylation. It remains to be determined whether such a synergy occurs in vivo.
机译:维生素E家族的生育三烯酚(T3s)具有有效的抗癌,抗氧化,抗炎和其他一些生物活性。为了更好地了解T3的生物利用度和代谢,使用HPLC /电化学检测和液相色谱电喷雾电离质谱(LC-ESI-MS)在补充混合T3饮食的小鼠尿液和粪便中鉴定出T3及其代谢产物。短链代谢物羧乙基羟基苯并二氢呋喃(CEHCs)和羧甲基丁基羟基苯并二氢吡喃(CMBHCs)是T3的主要代谢产物,但也鉴定出了几种具有双键的新代谢产物。与生育酚相似,大多数T3代谢产物以硫酸盐/葡萄糖醛酸偶联物的形式排泄在小鼠尿液中。还测定了在补充了相应T3的饮食下小鼠的不同器官以及尿液和粪便样品中γ-和δ-T3和γ-T3代谢产物的分布。研究了γ-T3和阿托伐他汀(ATST)在HT29和HCT116结肠癌细胞系中的协同抗癌作用。该组合极大地增强了每种单独的药剂抑制癌细胞生长以及诱导细胞周期停滞和凋亡的能力。与任何双重组合加第三种药物相比,γ-T3,ATST和塞来昔布的三种组合表现出协同作用。机理研究表明,γ-T3和ATST的协同作用可能归因于它们介导的3-羟基-3-甲基-戊二酰-CoA还原酶,以及随后对蛋白geranylgeranyation的抑制作用。是否在体内发生这种协同作用尚待确定。

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