基于模型的新生儿和婴儿螺内酯剂量优化。

IF 4.3 3区 医学 Q2 CHEMISTRY, MEDICINAL
Pharmaceuticals Pub Date : 2025-03-01 DOI:10.3390/ph18030355
Amira Soliman, Leandro F Pippa, Jana Lass, Stephanie Leroux, Valvanera Vozmediano, Natalia V de Moraes
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引用次数: 0

摘要

背景/目的:螺内酯(SP)自获批以来一直在儿科说明书外使用,但其在成人尤其是儿童中的使用受到有限药代动力学(PK)数据的挑战。方法:建立SP及其活性代谢产物canrenone (CAN)和7α硫代甲基螺内酯(TMS)在成人体内的生理药代动力学(PBPK)模型。这些模型旨在增强对SP的PK的认识,并为预测PK和优化婴儿和新生儿的SP剂量提供依据。考虑到SP的复杂代谢,我们假设CES1酶完全转化为CAN和TMS,并使用PK数据将CES1介导的代谢拟合为亲本代谢物模型。我们将CES1和CYP3A4的个体发生以及其他与年龄相关的生理变化纳入模型,以预测儿科人群的PK。结果:SP、CAN和TMS的PBPK模型准确捕获了不同给药方案下健康成年人的PK数据,包括食物对药物暴露的影响。使用婴儿和新生儿的PK数据评估儿科PBPK模型。模拟表明,6个月至2岁婴儿2.5 mg/kg和1-6个月婴儿2 mg/kg的非结合全身暴露量相当于成人治疗水肿的标准推荐每日维持剂量100 mg。结论:开发的PBPK模型为剂量决策和优化治疗结果提供了有价值的见解,特别是在临床研究具有挑战性的人群中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model-Informed Dose Optimization of Spironolactone in Neonates and Infants.

Background/Objectives: Spironolactone (SP) has been used off-label in pediatrics since its approval, but its use is challenged by limited pharmacokinetic (PK) data in adults and especially in children. Methods: Physiologically based pharmacokinetic (PBPK) models for SP and its active metabolites, canrenone (CAN) and 7α thio-methyl spironolactone (TMS), in adults were developed. These models aim to enhance understanding of SP's PK and provide a basis for predicting PK and optimizing SP dosing in infants and neonates. Given SP's complex metabolism, we assumed complete conversion to CAN and TMS by CES1 enzymes, fitting CES1-mediated metabolism to the parent-metabolite model using PK data. We incorporated ontogeny for CES1 and CYP3A4 and other age-related physiological changes into the model to anticipate PK in the pediatric population. Results: The PBPK models for SP, CAN, and TMS accurately captured the observed PK data in healthy adults across various dosing regimens, including the impact of food on drug exposure. The pediatric PBPK model was evaluated using PK data from infants and neonates. Simulations indicate that 2.5 mg/kg in 6-month to 2-year infants and 2 mg/kg in 1-6-months infants matched the total unbound systemic exposure equivalent to the standard recommended daily maintenance dose of 100 mg in adults for treating edema. Conclusions: The developed PBPK model provides valuable insights for dosing decisions and optimizing therapeutic outcomes, especially in populations where clinical studies are challenging.

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来源期刊
Pharmaceuticals
Pharmaceuticals Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
6.10
自引率
4.30%
发文量
1332
审稿时长
6 weeks
期刊介绍: Pharmaceuticals (ISSN 1424-8247) is an international scientific journal of medicinal chemistry and related drug sciences.Our aim is to publish updated reviews as well as research articles with comprehensive theoretical and experimental details. Short communications are also accepted; therefore, there is no restriction on the maximum length of the papers.
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