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苯恶洛芬在实验动物和人体中的处置与代谢。

Disposition and metabolism of benoxaprofen in laboratory animals and man.

作者信息

Chatfield D H, Green J N

出版信息

Xenobiotica. 1978 Mar;8(3):133-44. doi: 10.3109/00498257809060392.

Abstract
  1. The absorption, distribution, metabolism and excretion of benoxaprofen, a novel anti-inflammatory compound, has been studied in the dog, mouse, rat, rabbit, rhesus monkey and man. 2. Benoxaprofen was well absorbed after oral administration of doses of 1 to 10 mg/kg in all six species. Only unchanged drug was detected in plasma. It was extensively bound to plasma proteins, the highest binding occurring in man (99.8%) and rhesus monkey (99.6%). 3. Species differences were observed in the plasma elimination half-life, the longest being in man (33 h). The rat and mouse also had high values (28 and 24 h respectively) whereas in the other species, values were less than 13 h. 4. After an oral dose of [14C]benoxaprofen (20 mg/kg) to female rats, tissue concn. was highest in liver, kidney, lungs, adrenals and ovaries. Tissue distribution in the pregnant rat was identical to the normal female. The compound was found in the foetus but at a concn. lower than in all maternal organs. 5. There was a marked species difference in the route of excretion. In man, rhesus monkey and rabbit, excretion in the urine was a major route, whilst biliary--faecal excretion was the only effective route in the rat and dog. 6. No major metabolic transformation of benoxaprofen was observed. Man and dog excreted the compound predominantly as the ester glucuronide whereas the rat, mouse, rabbit and rhesus monkey excreted a large proportion of the dose unchanged.
摘要
  1. 新型抗炎化合物苯恶洛芬在犬、小鼠、大鼠、兔、恒河猴和人体中的吸收、分布、代谢及排泄情况已得到研究。2. 在所有这六个物种中,口服1至10毫克/千克剂量的苯恶洛芬后吸收良好。血浆中仅检测到未变化的药物。它与血浆蛋白广泛结合,在人体(99.8%)和恒河猴(99.6%)中结合率最高。3. 观察到血浆消除半衰期存在物种差异,人体中最长(33小时)。大鼠和小鼠的值也较高(分别为28小时和24小时),而在其他物种中,值小于13小时。4. 给雌性大鼠口服一剂[14C]苯恶洛芬(20毫克/千克)后,肝脏、肾脏、肺、肾上腺和卵巢中的组织浓度最高。妊娠大鼠的组织分布与正常雌性相同。在胎儿中发现了该化合物,但其浓度低于所有母体器官中的浓度。5. 排泄途径存在明显的物种差异。在人体、恒河猴和兔中,尿液排泄是主要途径,而在大鼠和犬中,胆汁-粪便排泄是唯一有效的途径。6. 未观察到苯恶洛芬有重大的代谢转化。人体和犬主要以酯葡糖醛酸苷形式排泄该化合物,而大鼠、小鼠、兔和恒河猴排泄的剂量中有很大一部分未发生变化。

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