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婴儿早期的药物代谢:以阿片类药物为例。

Drug metabolism in early infancy: opioids as an illustration.

作者信息

Van Donge Tamara, Mian Paola, Tibboel Dick, Van Den Anker John, Allegaert Karel

机构信息

a Intensive Care and Department of Paediatric Surgery , Erasmus MC-Sophia Children's Hospital , Rotterdam , The Netherlands.

b Systems Biomedicine and Pharmacology , LACDR, Leiden University , Leiden , The Netherlands.

出版信息

Expert Opin Drug Metab Toxicol. 2018 Mar;14(3):287-301. doi: 10.1080/17425255.2018.1432595. Epub 2018 Jan 30.

Abstract

Drug dosing in infants frequently depends on body weight as a crude indicator for maturation. Fentanyl (metabolized by Cytochrome P450 3A4) and morphine (glucuronidated by UDP-glucuronosyltransferase-2B7) served as model drugs to provide insight in maturation patterns of these enzymes and provide understanding of the impact of non-maturational factors to optimize dosing in infants. Areas covered: Systematic searches on metabolism and population pharmacokinetic (Pop-PK) models for fentanyl and morphine were performed. Pre- and post-model selection criteria were applied to assess and evaluate the validity of these models. It was observed that maturational changes have been rather well investigated, be it with variability in the maturational function estimates. The same holds true for Pop-PK models, where non-maturational covariates have also been reported (pharmacogenetics, disease state or external influences), although less incorporated in the PK models and with limited knowledge on mechanisms involved. Expert opinion: PK models for fentanyl and morphine are currently available. Consequently, we suggest that researchers should not continue to develop new models, but should investigate whether collected data fit in already existing models and provide additional value concerning the impact of (non)-maturational factors like drug-drug interactions or pharmacogenetics.

摘要

婴儿的药物剂量通常取决于体重,这是一种粗略的成熟度指标。芬太尼(由细胞色素P450 3A4代谢)和吗啡(由尿苷二磷酸葡萄糖醛酸转移酶-2B7进行葡萄糖醛酸化)作为模型药物,以深入了解这些酶的成熟模式,并理解非成熟因素对优化婴儿用药剂量的影响。涵盖领域:对芬太尼和吗啡的代谢及群体药代动力学(Pop-PK)模型进行了系统检索。应用模型选择前后的标准来评估和评价这些模型的有效性。据观察,成熟度变化已得到相当充分的研究,尽管成熟度函数估计存在差异。Pop-PK模型也是如此,其中也报告了非成熟协变量(药物遗传学、疾病状态或外部影响),尽管在药代动力学模型中的纳入较少,且对相关机制的了解有限。专家意见:目前已有芬太尼和吗啡的药代动力学模型。因此,我们建议研究人员不应继续开发新模型,而应研究收集到的数据是否适合现有的模型,并提供有关药物相互作用或药物遗传学等(非)成熟因素影响的额外价值。

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