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首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Comparative toxicokinetics and metabolism of rebaudioside A, stevioside, and steviol in rats.
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Comparative toxicokinetics and metabolism of rebaudioside A, stevioside, and steviol in rats.

机译:莱鲍迪苷A,甜菊糖苷和甜菊醇在大鼠中的比较毒性动力学和代谢。

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摘要

The toxicokinetics and metabolism of rebaudioside A, stevioside, and steviol were examined in rats for comparative purposes to determine whether toxicological studies conducted previously with stevioside would be applicable to the structurally-related glycoside, rebaudioside A. Single, oral doses of the radiolabelled compounds were extensively and rapidly absorbed with plasma concentration-time profiles following similar patterns for stevioside and rebaudioside A. Elimination of radioactivity from plasma was essentially complete within 72h. All plasma samples had similar metabolite profiles; the predominant radioactive component in all samples was steviol, with lower amounts of steviol glucuronide(s) and low levels of one or two other metabolites. Rebaudioside A, stevioside, and steviol were metabolized and excreted rapidly, with the majority of the radioactivity eliminated in the feces within 48h. Urinary excretion accounted for less than 2% of the administered dose for all compounds in both intact and bile duct-cannulated rats, and the majority of the absorbed dose was excreted via the bile. After administration of the compounds to intact and bile duct-cannulated rats, radioactivity in the feces was present primarily as steviol. The predominant radioactive compound detected in the bile of all cannulated rats was steviol glucuronide(s), indicating de-conjugation in the lower intestine. Overall, the data on toxicokinetics and metabolism indicate that rebaudioside A and stevioside are handled in an almost identical manner. These studies support the use of toxicological safety studies conducted with stevioside for the safety assessment of rebaudioside A.
机译:为了比较目的,在大鼠中检查了莱鲍迪甙A,甜菊糖甙和甜菊醇的毒物代谢动力学和代谢,以确定先前用甜菊甙进行的毒理学研究是否适用于结构相关的糖苷,莱鲍迪甙A。放射性标记化合物的单次口服剂量为以甜菊糖苷和莱鲍迪苷A的相似模式,以血浆浓度-时间曲线广泛,迅速地吸收。从血浆中消除放射性基本上在72小时内完成。所有血浆样品均具有相似的代谢产物谱。所有样品中主要的放射性成分是甜菊醇,其中甜菊醇葡糖醛酸含量较低,而其他一种或两种代谢产物的含量较低。莱鲍迪甙A,甜菊糖甙和甜菊醇被代谢并迅速排泄,大部分放射性在48小时内在粪便中消除。在完整和经胆管插管的大鼠中,尿排泄占所有化合物给药剂量的不到2%,大部分吸收剂量通过胆汁排泄。向完整的和经胆管插管的大鼠给药后,粪便中的放射性主要以甜菊醇形式存在。在所有插管大鼠的胆汁中检测到的主要放射性化合物是甜菊醇葡糖醛酸苷,表明在下部小肠内发生了脱结合。总体而言,有关毒代动力学和代谢的数据表明莱鲍迪甙A和甜菊甙的处理方式几乎相同。这些研究支持将与甜菊糖苷进行的毒理学安全性研究用于莱鲍迪苷A的安全性评估。

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