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给予大鼠厌食剂量和毒性剂量的右旋芬氟拉明的单剂量和多剂量动力学

Single- and multiple-dose kinetics of d-fenfluramine in rats given anorectic and toxic doses.

作者信息

Caccia S, Anelli M, Ferrarese A, Fracasso C, Garattini S

机构信息

Istituto di Ricerche Farmacologiche Mario Negri, Milan, Italy.

出版信息

Xenobiotica. 1992 Feb;22(2):217-26. doi: 10.3109/00498259209046620.

Abstract
  1. High parenteral doses of a twice-daily schedule of d,l-fenfluramine (d,l-F) may cause long-lasting decrease of functional indices of brain serotoninergic neurones in rats. The single- and multiple-dose (b.i.d. x 4 days) kinetics of low (1.25 mg/kg) and high (12.5 mg/kg) subcutaneous (s.c.) doses of d-F, which accounts of the anorectic effects of the racemate, and its deethylated metabolite d-norfenfluramine (d-NF), were therefore examined and compared with those of pharmacologically effective oral doses (0.3-1.25 mg/kg) in rats. 2. There were dose-dependent alterations of kinetic parameters after s.c. and oral dosing, indicating that hepatic clearance of d-F in the rat can be saturated either by increasing the size of the single dose or during repeated dosing. Nonlinearity was also observed for d-NF. Consequently at high doses exposure of rat to the drug, as measured by the sum of area under the plasma concentration-time curve (AUC) of d-F and d-NF considerably exceeded that expected from simple dosage considerations, particularly with repeated administration of d-F. 3. Total exposure at the high doses considerably exceeded that at pharmacological doses, however, indicating an ample margin in favour of anorectic activity. The possibility that the long-term depletion of brain 5-HT by d-F and/or its metabolite d-NF may have relevance at the usual therapeutic dose, is discussed.
摘要
  1. 每日两次肠胃外给予大剂量消旋芬氟拉明(d,l-F)可导致大鼠脑内5-羟色胺能神经元功能指标的持久下降。因此,研究了低剂量(1.25毫克/千克)和高剂量(12.5毫克/千克)皮下注射d-F及其脱乙基代谢物d-去甲芬氟拉明(d-NF)的单剂量和多剂量(每日两次,共4天)动力学,并将其与大鼠药理学有效口服剂量(0.3 - 1.25毫克/千克)的动力学进行比较,消旋体的厌食作用由d-F引起。2. 皮下注射和口服给药后动力学参数存在剂量依赖性改变,表明增加单次剂量大小或重复给药期间均可使大鼠肝脏对d-F的清除达到饱和。d-NF也观察到非线性。因此,在高剂量时,以d-F和d-NF血浆浓度-时间曲线下面积(AUC)之和衡量,大鼠对该药物的暴露量大大超过简单剂量考虑所预期的量,尤其是重复给予d-F时。3. 高剂量时的总暴露量大大超过药理学剂量时的暴露量,然而,这表明在有利于厌食活性方面有足够的安全范围。讨论了d-F及其代谢物d-NF长期消耗脑内5-羟色胺(5-HT)在通常治疗剂量下可能产生影响的可能性。

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