首页> 外文期刊>Archives of Toxicology >4-Methylsulfanyl-3-butenyl isothiocyanate derived from glucoraphasatin is a potent inducer of rat hepatic phase II enzymes and a potential chemopreventive agent
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4-Methylsulfanyl-3-butenyl isothiocyanate derived from glucoraphasatin is a potent inducer of rat hepatic phase II enzymes and a potential chemopreventive agent

机译:衍生自糖皮质激素的4-甲基硫烷基-3-丁烯基异硫氰酸酯是大鼠肝II期酶的有效诱导剂和潜在的化学预防剂

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The objective of this study was to establish whether the phytochemical glucoraphasatin, a glucosinolate present in cruciferous vegetables, and its corresponding isothiocyanate, 4-methylsulfanyl-3-butenyl isothiocyanate, up-regulate enzymes involved in the detoxification of carcinogens and are thus potential chemopreventive agents. Glucoraphasatin and myrosinase were isolated and purified from Daikon sprouts and Sinapis alba L., respectively. Glucoraphasatin (0–10 μM) was incubated for 24 h with precision-cut rat liver slices in the presence and absence of myrosinase, the enzyme that converts the glucosinolate to the isothiocyanate. The intact glucosinolate failed to influence the O-dealkylations of methoxy- and ethoxyresorufin or the apoprotein expression of CYP1 enzymes. Supplementation with myrosinase led to an increase in the dealkylation of methoxyresorufin, but only at the highest concentration of the glucosinolate, and CYP1A2 expression. In the absence of myrosinase, glucoraphasatin caused a marked increase in epoxide hydrolase activity at concentrations as low as 1 μM paralleled by a rise in the enzyme protein expression; at the highest concentration only, a rise was also observed in glucuronosyl transferase activity, but other phase II enzyme systems were unaffected. Addition of myrosinase to the glucoraphasatin incubation maintained the rise in epoxide hydrolase and glucuronosyl transferase activities, further elevated quinone reductase and glutathione S-transferase activities, and increased total glutathione concentrations. It is concluded that at low concentrations, glucoraphasatin, either intact and/or through the formation of 4-methylsulfanyl-3-butenyl isothiocyanate, is a potent inducer of hepatic enzymes involved in the detoxification of chemical carcinogens and merits further investigation for chemopreventive activity.
机译:这项研究的目的是确定十字花科蔬菜中存在的植物化学葡糖苷,一种芥子油苷及其相应的异硫氰酸盐,4-甲基硫烷基-3-丁烯基异硫氰酸盐是否会上调参与致癌物排毒的酶,因此是潜在的化学预防剂。分别从Daikon豆芽和Sinapis alba L.分离并纯化了葡萄糖酸α-芥酸和黑芥子酶。在存在和不存在黑芥子酶的情况下,将葡糖phasatin(0-10μM)与精密切割的大鼠肝切片孵育24小时,该酶将芥子油苷转化为异硫氰酸酯。完整的芥子油苷不能影响甲氧基-和乙氧基-间苯二酚的O-脱烷基化或CYP1酶的载脂蛋白表达。补充黑芥子酶会导致甲氧基间苯二酚的脱烷基增加,但仅在芥子油苷最高浓度和CYP1A2表达时才会发生。在缺乏黑芥子酶的情况下,在低至1μM的浓度下,葡糖phasatin导致环氧化物水解酶活性显着增加,同时酶蛋白表达增加;仅在最高浓度下,葡糖醛酸糖基转移酶活性也观察到升高,但是其他II期酶系统不受影响。在葡糖酰胺酶培养中加入黑芥子酶可保持环氧化物水解酶和葡萄糖醛糖基转移酶活性的升高,醌还原酶和谷胱甘肽S-转移酶活性进一步升高,并增加总谷胱甘肽浓度。结论是,在低浓度下,完整和/或通过形成4-甲基硫烷基-3-丁烯基异硫氰酸酯而形成的葡糖phasatin是肝酶的有效诱导剂,其参与化学致癌物的解毒作用,值得进一步研究其化学预防活性。

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