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药效动力学-药代动力学关系与治疗药物监测

Pharmacodynamic-pharmacokinetic relationships and therapeutic drug monitoring.

作者信息

Kobayashi K, Jodrell D I, Ratain M J

机构信息

Department of Medicine, University of Chicago, Illinois 60637.

出版信息

Cancer Surv. 1993;17:51-78.

PMID:8137353
Abstract

Pharmacokinetic-pharmacodynamic studies are becoming increasingly important in the development of new anti-cancer drugs. The Hill maximal effect model describes a sigmoidal dose-response relationship and has been applied to analyses of both haematological and non-haematological toxicity. This review discusses several approaches to population pharmacodynamics, including the two stage, NONMEM, and non-parametric approaches. Pharmacodynamic models for the haematological toxicity of amonafide, carboplatin, doxorubicin, etoposide, HMBA and menogaril are discussed, as are models for non-haematological toxicity. Adaptive control methods and therapeutic drug monitoring are useful in dosing drugs with narrow therapeutic windows, but the indications for using such strategies should be carefully selected. Models for 5FU, HMBA, methotrexate, 6-mercaptopurine, carboplatin and etoposide are discussed. Limited sampling strategies can facilitate the completion of pharmacokinetic studies and should be developed during phase I testing of new compounds. A new area of future importance is the investigation of drugs with active metabolites, such as the anthracyclines and amonafide.

摘要

药代动力学-药效学研究在新型抗癌药物研发中变得越来越重要。希尔最大效应模型描述了一种S形剂量-反应关系,并已应用于血液学和非血液学毒性分析。本综述讨论了群体药效学的几种方法,包括两阶段法、NONMEM法和非参数法。讨论了氨苯吖啶、卡铂、阿霉素、依托泊苷、HMBA和美诺加的血液学毒性药效学模型以及非血液学毒性模型。自适应控制方法和治疗药物监测对于治疗窗窄的药物给药很有用,但应谨慎选择使用此类策略的适应症。讨论了5-氟尿嘧啶、HMBA、甲氨蝶呤、6-巯基嘌呤、卡铂和依托泊苷的模型。有限采样策略有助于药代动力学研究的完成,应在新化合物的I期试验期间制定。未来一个重要的新领域是对具有活性代谢物的药物进行研究,如蒽环类药物和氨苯吖啶。

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