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Determination of Goitrogenic Metabolites in the Serum of Male Wistar Rat Fed Structurally Different Glucosinolates

机译:饲喂结构不同的芥子油苷的雄性Wistar大鼠血清中的促甲状腺激素代谢产物的测定

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摘要

Glucosinolates (GLSs) are abundant in cruciferous vegetables and reported to have anti thyroidal effects. Four GLSs (sinigrin, progoitrin, glucoerucin, and glucotropaeolin) were administered orally to rats, and the breakdown products of GLSs (GLS-BPs: thiocyanate ions, cyanide ions, organic isothiocyanates, organic nitriles, and organic thiocyanates) were measured in serum. Thiocyanate ions were measured by colorimetric method, and cyanide ions were measured with CI-GC-MS. Organic isothiocyanates and their metabolites were measured with the cyclocondensation assay. Organic nitriles and organic thiocyanates were measured with EI-GC-MS. In all treatment groups except for progoitrin, thiocyanate ions were the highest among the five GLS-BPs. In the progoitrin treated group, a high concentration of organic isothiocyanates (goitrin) was detected. In the glucoerucin treated group, a relatively low amount of goitrogenic substances was observed. The metabolism to thiocyanate ions happened within five hours of the administration, and the distribution of GLSs varied with the side chain. GLSs with side chains that can form stable carbocation seemed to facilitate the degradation reaction and produce a large amount of goitrogenic thiocyanate ions. Because goitrogenic metabolites can be formed without myrosinase, the inactivation of myrosinase during cooking would have no effect on the anti-nutritional effect of GLSs in cruciferous vegetables.
机译:十字花科蔬菜中含有丰富的芥子油苷(GLSs),据报道具有抗甲状腺作用。向大鼠口服施用四个GLS(sinigrin,progoitrin,葡萄糖绿素和促肾上腺皮质激素),并在血清中测量GLS的分解产物(GLS-BPs:硫氰酸根离子,氰化物离子,有机异硫氰酸根,有机腈和有机硫氰酸根)。用比色法测定硫氰酸根离子,用CI-GC-MS测定氰根离子。有机异硫氰酸酯及其代谢产物通过环缩合测定法进行测量。用EI-GC-MS测定有机腈和有机硫氰酸盐。在所有治疗组中,除普罗戈蛋白外,硫氰酸根离子在五个GLS-BP中最高。在progoitrin治疗组中,检测到高浓度的有机异硫氰酸盐(goitrin)。在葡糖苷治疗组中,观察到相对少量的促甲状腺激素物质。给药后五个小时内,新陈代谢为硫氰酸根离子,GLS的分布随侧链而变化。带有可形成稳定碳正离子的侧链的GLS似乎有助于降解反应并产生大量的促甲状腺酸硫氰酸根离子。因为可以在没有黑芥子酶的情况下形成促甲状腺激素代谢产物,所以在烹饪过程中黑芥子酶的失活不会对十字花科蔬菜中GLS的抗营养作用产生影响。

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