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Physiologically-based pharmacokinetic simulations in pharmacotherapy: selection of the optimal administration route for exogenous melatonin

机译:药物疗法的生理学药代动力学模拟:外源褪黑素的最佳管理途径选择

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摘要

The benefits of melatonin on human body are drawing increasing attention from several researchers in different fields. While its role as cure for sleep disturbances (e.g., jet lag, insomnia) is well documented and established, new functions in physiological and pathophysiological processes are emerging. To investigate these effects, there is need for the characterization of melatonin transport processes in the body and resulting pharmacokinetics. Although recent works propose physiologically-based pharmacokinetic modelling of melatonin, no work has yet highlighted the potential of PBPK simulations to shed light on melatonin pharmacokinetic aspects and discrimination among administration routes. This paper presents, validates, and discusses a versatile PBPK model featuring different ways of administration and compares the resulting pharmacokinetic profiles of intravenous, oral, and transdermal administration, with the goal of understanding which is the optimal route to achieve either physiological and/or supraphysiological melatonin levels.
机译:褪黑激素对人体的益处是从不同领域的几个研究人员吸引了越来越关注。虽然其对睡眠障碍的治疗作用(例如,喷射滞后,失眠,失眠)是充分的记录和建立的,但出现了生理和病理生理过程的新功能。为了研究这些效果,需要在体内和所产生的药代动力学中表征褪黑激素输送过程。虽然最近的作品提出了基于生理学的褪黑激素的药代动力学建模,但没有工作尚未强调的是PBPK模拟对褪黑素的褪色式药代动力学方面和给药路线歧视的潜力。本文呈现,验证,并讨论具有不同施用方式的通用PBPK模型,并比较静脉内,口腔和透皮和透皮给药的所得药代动力学谱,其目的是实现生理和/或职务的最佳路线褪黑激素水平。

著录项

  • 作者

    Adriana Savoca; Davide Manca;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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