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吸入性药物选择性沉积的数学模型。

Mathematical model for the selective deposition of inhaled pharmaceuticals.

作者信息

Martonen T B

机构信息

Environmental Toxicology Division, U.S. Environmental Protection Agency, Research Triangle Park, NC 27711.

出版信息

J Pharm Sci. 1993 Dec;82(12):1191-9. doi: 10.1002/jps.2600821202.

Abstract

To accurately assess the potential therapeutic effects of airborne drugs, the deposition sites of inhaled particles must be known. Herein, an original theory is presented for physiologically based pharmacokinetic modeling and related prophylaxis of airway diseases. The mathematical model describes the behavior and fate of particles in the lungs of adult human subjects under various breathing conditions. Their deposition patterns are calculated via superposition of the separate but not independent processes of inertial impaction, sedimentation, and diffusion. The related computer code is designed to calculate total and compartmental (tracheobronchial and pulmonary) distributions of inhaled aerosols. In this manuscript, the model is first tested via comparisons of predicted deposition patterns with laboratory data from human inhalation exposure experiments and then it is applied to determine which factors most influence the dosimetry of inhaled particles. In this format, deposition patterns are explicitly related to particle characteristics, ventilatory parameters, and intersubject variabilities of lung morphologies. The dosimetric model was developed to improve the efficacy of aerosol therapy via the selective deposition of inhaled pharmaceuticals at prescribed lung locations to elicit optimum effects.

摘要

为准确评估吸入式药物的潜在治疗效果,必须了解吸入颗粒的沉积部位。在此,我们提出了一种基于生理学的药代动力学建模及气道疾病相关预防的原创理论。该数学模型描述了成年人体在各种呼吸条件下肺部颗粒的行为和归宿。它们的沉积模式是通过惯性碰撞、沉降和扩散等相互独立但又非完全无关的过程叠加计算得出的。相关计算机代码旨在计算吸入气雾剂的总体分布和分区(气管支气管和肺部)分布。在本论文中,该模型首先通过将预测的沉积模式与人体吸入暴露实验的实验室数据进行比较来进行测试,然后应用该模型来确定哪些因素对吸入颗粒的剂量测定影响最大。以这种形式,沉积模式与颗粒特性、通气参数以及个体间肺部形态的变异性明确相关。剂量测定模型旨在通过将吸入药物选择性沉积在规定的肺部位置以产生最佳效果,从而提高气雾剂治疗的疗效。

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