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Metabolic Fate of 2,4-Dichlorophenol and Related Plant Residues in Rats

机译:大鼠2,4-二氯苯酚的代谢命运及相关植物残基

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摘要

This study compared the metabolic fate of [14C]-DCP, [14C]-residues from radish plants, and purified [14C]-DCP-(acetyl)glucose following oral administration in rats. A rapid excretion of radioactivity in urine occurred for [14C]-DCP, [14C]-DCP-(acetyl)glucose, and soluble residues, 69, 85, and 69% within 48 h, respectively. Radio-HPLC profiles of 0−24 h urine from rats fed [14C]-DCP and [14C]-DCP-(acetyl)glucose were close and qualitatively similar to those obtained from plant residues. No trace of native plant residues was detected under the study conditions. The structures of the two major peaks were identified by MS as the glucuronide and the sulfate conjugates of DCP. The characterization of a dehydrated glucuronide conjugate by MS and NMR of DCP was unusual. In contrast to soluble residues, bound residues were mainly excreted in feces, 90% within 48 h, whereas total residues were eliminated in both urine and feces. For total residues, the radioactivity in feces was higher than expected from the percentage of soluble and bound residues in radish plants. This result highlighted that less absorption took place when residues were present in the plant matrix as compared to plant-free residues and DCP.
机译:这项研究比较了大鼠口服后[14C] -DCP,萝卜植物中[14C]-残基的代谢命运,以及纯化的[14C] -DCP-(乙酰基)葡萄糖。 [14C] -DCP,[14C] -DCP-(乙酰基)葡萄糖和可溶性残渣分别在48小时内迅速排泄出尿,其中69%,85%和69%为可溶残留物。喂食[14C] -DCP和[14C] -DCP-(乙酰基)葡萄糖的大鼠0-24小时尿液的放射HPLC谱与从植物残渣获得的尿HPLC谱相近并且在质量上相似。在研究条件下未发现任何天然植物残留物。由MS鉴定出两个主要峰的结构为DCP的葡糖醛酸苷和硫酸盐结合物。 MSP和NMR对DCP的脱水葡糖醛酸苷共轭物的表征是不寻常的。与可溶性残渣相反,结合的残渣主要在粪便中排泄,在48小时内90%排泄,而尿液和粪便中的总残渣被清除。对于总残留物,粪便中的放射性高于萝卜植物中可溶和结合的残留物所占的百分比。该结果突出表明,与不含植物的残留物和DCP相比,当植物基质中存在残留物时吸收较少。

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