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3,4,3',4'-四氯联苯的体内代谢及大鼠体内代谢产物的毒理学评估

Metabolism in vivo of 3,4,3',4'-tetrachlorobiphenyl and toxicological assessment of the metabolites in rats.

作者信息

Yoshimura H, Yonemoto Y, Yamada H, Koga N, Oguri K, Saeki S

机构信息

Faculty of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.

出版信息

Xenobiotica. 1987 Aug;17(8):897-910. doi: 10.3109/00498258709044189.

Abstract
  1. Metabolism in vivo of 3,4,3',4'-tetrachlorobiphenyl (TCB) and toxicological assessment of the metabolites were investigated in the rat. 2. Four metabolites were isolated from faeces of rats dosed with 3,4,3',4'-TCB. Two were identified as 5-hydroxy-3,4,3',4'-TCB and a chlorine-shift metabolite, 4-hydroxy-3,5,3',4'-TCB, by comparison of melting points, chromatographic mobilities and spectral features with those of the synthetic samples. A dihydroxy-TCB and monohydroxy-trichlorobiphenyl were also indicated by mass spectrometry to be excreted in faeces as minor metabolites. 3. Faecal excretion of unchanged 3,4,3',4'-TCB, 5-hydroxy-3,4,3',4'-TCB and 4-hydroxy-3,5,3',4'-TCB was 0.8%, 19.6% and 11.6% of dose, respectively, in 5 days after i.p. injection of 3,4,3',4'-TCB at a dose of 50 mg/kg. 4. From the inability to cause the liver hypertrophy and thymus atrophy, both monohydroxy-metabolites of 3,4,3',4'-TCB are much less toxic than the parent 3,4,3',4'-TCB. In addition, these phenolic metabolites did not induce the activities of benzo[a]pyrene hydroxylase and DT-diaphorase, whereas 3,4,3',4'-TCB greatly induced these activities. These results indicated that unlike PCB congeners with phenobarbital-type inducing ability, 3,4,3',4'-TCB, a prototype of 3-methylcholanthrene-type inducers, is detoxified by metabolic hydroxylation.
摘要
  1. 研究了大鼠体内3,4,3',4'-四氯联苯(TCB)的代谢情况及其代谢产物的毒理学评估。2. 从经3,4,3',4'-TCB给药的大鼠粪便中分离出四种代谢产物。通过将熔点、色谱迁移率和光谱特征与合成样品进行比较,确定其中两种为5-羟基-3,4,3',4'-TCB和一种氯迁移代谢产物4-羟基-3,5,3',4'-TCB。质谱分析还表明,一种二羟基-TCB和单羟基三氯联苯作为次要代谢产物随粪便排出。3. 腹腔注射剂量为50mg/kg的3,4,3',4'-TCB后5天内,粪便中未变化的3,4,3',4'-TCB、5-羟基-3,4,3',4'-TCB和4-羟基-3,5,3',4'-TCB的排泄量分别为给药剂量的0.8%、19.6%和11.6%。4. 由于无法引起肝脏肥大和胸腺萎缩,3,4,3',4'-TCB的两种单羟基代谢产物的毒性远低于母体3,4,3',4'-TCB。此外,这些酚类代谢产物不会诱导苯并[a]芘羟化酶和DT-黄递酶的活性,而3,4,3',4'-TCB则能极大地诱导这些酶的活性。这些结果表明,与具有苯巴比妥型诱导能力的多氯联苯同系物不同,作为3-甲基胆蒽型诱导剂原型的3,4,3',4'-TCB通过代谢羟基化进行解毒。

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