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一种具有杀丝虫活性的乙炔磺酰胺在大鼠体内的组织分布及代谢

Tissue distribution and metabolism in rat of an ethynesulphonamide with filaricidal activity.

作者信息

Radembino N, Dessalles M C, Trouvin J H, Loiseau P M, Gayral P, Mahuzier G, Rapp M, Labarre P, Godeneche D, Madelmont J C, Maurizis J C, Veyre A, Chabard J L

机构信息

Laboratoires de Méthodologies Bioanalytiques, de Parasitologie et de Pharmacologie, Faculté de Pharmacie, Châtenay-Malabry, France.

出版信息

Xenobiotica. 1997 Jan;27(1):73-85. doi: 10.1080/004982597240776.

DOI:10.1080/004982597240776
PMID:9041680
Abstract
  1. The tissue distribution and metabolism of a new filaricidal agent P903 (N-[(2-phenylethynyl)sulfonyl]morpholine) were studied in rat. 2. After s.c. administration of 14C and 13C P903, the Tmax in the blood was observed on day 2. Elimination was slow and > 95% was bound to protein. Radioactivity was distributed in the whole organism but particularly in erythrocytes and the lymphatic channel. Four days later, > 60% of the radioactivity was excreted in urine and faeces at equal amounts and 15% remained at the injection point. 3. In all biological fluids tested no P903 was found but only its metabolites. 4. One principal metabolite, the N-[(2-phenyloxo-2-ethane) sulphonyl] morpholine or oxosulphonamide was identified in blood, urine and faeces as compared with the reference compound by GC/MS and NMR. This latter molecule was detected following hydrolysis by hydrochloric acid but not with beta glucuronidase/sulphatase. 5. Unconjugated and conjugated oxosulphonamide represented > 85% of the radioactivity at all times tested in blood but only 38 and 35% respectively of urinary and faecal radioactivity on day 1 after the administration of the labelled drug. 6. Thus, P903 is rapidly converted to a reactive metabolite, probably an oxirene, which is then conjugated with endogenous components to form conjugated oxosulphonamide and an unknown metabolite. The role of this reactive metabolite in antifilarial activity seems to be very important in understanding the mechanism of action of P903.
摘要
  1. 在大鼠体内研究了新型杀丝虫剂P903(N-[(2-苯乙炔基)磺酰基]吗啉)的组织分布和代谢情况。2. 皮下注射14C和13C标记的P903后,在第2天观察到血液中的药物达峰时间(Tmax)。消除缓慢,且>95%与蛋白质结合。放射性分布于整个机体,但尤其在红细胞和淋巴通道中。4天后,>60%的放射性以等量经尿液和粪便排出,15%保留在注射部位。3. 在所有检测的生物体液中均未发现P903,仅发现其代谢产物。4. 通过气相色谱/质谱联用仪(GC/MS)和核磁共振(NMR)与参考化合物比较,在血液、尿液和粪便中鉴定出一种主要代谢产物,即N-[(2-苯基氧代-2-乙烷)磺酰基]吗啉或氧代磺酰胺。在盐酸水解后检测到了后一种分子,但β-葡萄糖醛酸酶/硫酸酯酶水解后未检测到。5. 在血液中所有检测时间点,未结合和结合的氧代磺酰胺占放射性的>85%,但在给予标记药物后第1天,在尿液和粪便放射性中分别仅占38%和35%。6. 因此,P903迅速转化为一种活性代谢产物,可能是环氧乙烯,然后与内源性成分结合形成结合型氧代磺酰胺和一种未知代谢产物。这种活性代谢产物在抗丝虫活性中的作用在理解P903的作用机制方面似乎非常重要。

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