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磺胺嘧啶在新生仔猪和幼猪体内的药代动力学及代谢

Pharmacokinetics and metabolism of sulphadiazine in neonatal and young pigs.

作者信息

Friis C, Gyrd-Hansen N, Nielsen P, Olsen C E, Rasmussen F

出版信息

Acta Pharmacol Toxicol (Copenh). 1984 May;54(5):321-6. doi: 10.1111/j.1600-0773.1984.tb01937.x.

Abstract

The pharmacokinetics of sulphadiazine was studied in newborn, 1 week, and 8 weeks old piglets after intravenous administration of 60 mg/kg. Kinetic parameters were calculated using a two compartment open model. Steady state volume of distribution averaged 0.62, 0.56, and 0.48 1/kg at birth, 1 week, and 8 weeks, respectively. Elimination half-life decreased from 455 min. at birth to 322 min. at 1 week and 157 min. at 8 weeks leading to a rise in body clearance from 0.99 to 2.20 ml/min./kg during the same age period. Urinary excretion data indicated that the increase in body clearance reflects maturational changes in both renal function and metabolic capacity. Although renal clearance increased several times more than metabolic clearance, metabolism remained the main contributor to elimination of SDZ at all ages. Metabolism of SDZ involves two important pathways - acetylation and aromatic hydroxylation; the former being well developed at birth, while the latter increased markedly during the age period studied.

摘要

在新生仔猪、1周龄仔猪和8周龄仔猪静脉注射60mg/kg磺胺嘧啶后,对其药代动力学进行了研究。使用二室开放模型计算动力学参数。出生时、1周龄和8周龄时,稳态分布容积分别平均为0.62、0.56和0.48L/kg。消除半衰期从出生时的455分钟降至1周龄时的322分钟和8周龄时的157分钟,导致同一时期机体清除率从0.99ml/min./kg升至2.20ml/min./kg。尿排泄数据表明,机体清除率的增加反映了肾功能和代谢能力的成熟变化。尽管肾清除率的增加比代谢清除率高出几倍,但在所有年龄段,代谢仍然是磺胺嘧啶消除的主要途径。磺胺嘧啶的代谢涉及两个重要途径——乙酰化和芳香羟基化;前者在出生时就已充分发育,而后者在研究的年龄段中显著增加。

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