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心得安在各种小型动物物种中的代谢。

Practolol metabolism in various small animal species.

作者信息

Reeves P R, McCormick D J, Jepson H T

出版信息

Xenobiotica. 1979 Jul;9(7):453-8. doi: 10.3109/00498257909038750.

Abstract
  1. The metabolism of the beta-adrenergic blocking agent practolol has been studied in a variety of small animal species, using both ring- and acetyl-14C-labelled material. After oral dosing at 100 mg/kg, elimination of 14C in urine and expired air was monitored, and urinary metabolite patterns were examined by t.l.c. 2. Marmoset was unusual in extensively deacetylating practolol (c. 57% dose). Urinary elimination was low, with only 25% being recovered in 4 days; over 30% of urinary 14C was present as desacetyl practolol, whereas less than 50% was unchanged practolol. 3. Hamster was also atypical, in its extensive hydroxylation of practolol. Urine contained 60% dose; 11% of urinary radioactivity was present as 3-hydroxypractolol, much of the polar material present (48%) appeared to be a conjugate of this, and only 35% was present as practolol. 4. For the other species studied (rat, mouse, guinea-pig and rabbit, metabolism was more limited. Deacetylation was typically about 5%, but was somewhat higher in the mouse (8--14%). Urine was the major route of elimination and practolol represented 50--90% of urinary radioactivity. 5. Despite extensive toxicity studies, both in species which metabolize practolol similarly to man and in species such as the hamster and marmoset which metabolize practolol extensively, no animal model has been found for the human adverse reactions.
摘要
  1. 已使用环标记和乙酰基 - 14C标记的物质,在多种小型动物物种中研究了β - 肾上腺素能阻滞剂心得宁的代谢情况。以100mg/kg的剂量口服给药后,监测尿液和呼出气体中14C的消除情况,并通过薄层层析法检查尿液代谢物模式。

  2. 狨猴在大量去乙酰化心得宁方面表现异常(约占剂量的57%)。尿液排泄量低,4天内仅回收25%;尿液中超过30%的14C以去乙酰心得宁形式存在,而未改变的心得宁含量不到50%。

  3. 仓鼠也不典型,它对心得宁进行大量羟基化。尿液中含60%的剂量;尿液放射性的11%以3 - 羟基心得宁形式存在,大部分存在的极性物质(48%)似乎是其结合物,仅35%以心得宁形式存在。

  4. 对于其他研究的物种(大鼠、小鼠、豚鼠和兔子),代谢作用更为有限。去乙酰化通常约为5%,但在小鼠中略高(8 - 14%)。尿液是主要的排泄途径,心得宁占尿液放射性的50 - 90%。

  5. 尽管进行了广泛的毒性研究,无论是在代谢心得宁与人相似的物种中,还是在像仓鼠和狨猴这样广泛代谢心得宁的物种中,都未找到针对人类不良反应的动物模型。

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