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从脂质剂型中释放药物的数学模型。

Mathematical modeling of drug release from lipid dosage forms.

机构信息

Univ. Lille Nord de France, College of Pharmacy, 3 Rue du Prof. Laguesse, 59006 Lille, France.

出版信息

Int J Pharm. 2011 Oct 10;418(1):42-53. doi: 10.1016/j.ijpharm.2011.07.015. Epub 2011 Jul 23.

DOI:10.1016/j.ijpharm.2011.07.015
PMID:21802501
Abstract

Lipid dosage forms provide an interesting potential for controlled drug delivery. In contrast to frequently used poly(ester) based devices for parenteral administration, they do not lead to acidification upon degradation and potential drug inactivation, especially in the case of protein drugs and other acid-labile active agents. The aim of this article is to give an overview on the current state of the art of mathematical modeling of drug release from this type of advanced drug delivery systems. Empirical and semi-empirical models are described as well as mechanistic theories, considering diffusional mass transport, potentially limited drug solubility and the leaching of other, water-soluble excipients into the surrounding bulk fluid. Various practical examples are given, including lipid microparticles, beads and implants, which can successfully be used to control the release of an incorporated drug during periods ranging from a few hours up to several years. The great benefit of mechanistic mathematical theories is the possibility to quantitatively predict the effects of different formulation parameters and device dimensions on the resulting drug release kinetics. Thus, in silico simulations can significantly speed up product optimization. This is particularly useful if long release periods (e.g., several months) are targeted, since experimental trial-and-error studies are highly time-consuming in these cases. In the future it would be highly desirable to combine mechanistic theories with the quantitative description of the drug fate in vivo, ideally including the pharmacodynamic efficacy of the treatments.

摘要

脂质剂型为药物控制释放提供了一个很有前景的选择。与常用于注射给药的聚(酯)类装置不同,它们在降解时不会导致酸化和潜在的药物失活,特别是对于蛋白质药物和其他对酸不稳定的活性药物。本文的目的是概述从这种先进药物传递系统中释放药物的数学模型的最新研究进展。本文描述了经验和半经验模型以及机械理论,考虑了扩散质量传递、潜在的有限药物溶解度以及其他水溶性赋形剂向周围主体流体的浸出。给出了各种实际示例,包括脂质微粒、珠粒和植入物,它们可以成功地用于控制在数小时到数年的时间段内掺入药物的释放。机械数学理论的最大优势是可以定量预测不同制剂参数和装置尺寸对药物释放动力学的影响。因此,通过计算机模拟可以显著加快产品优化。如果需要较长的释放时间(例如,几个月),这尤其有用,因为在这种情况下,实验试错研究非常耗时。未来,将机械理论与体内药物命运的定量描述相结合是非常理想的,理想情况下还包括治疗的药效学疗效。

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