Physiologically Based Pharmacokinetic Modeling and Clinical Extrapolation for Topical Application of Pilocarpine on Eyelids: A Comprehensive Study

IF 3.7 3区 医学 Q2 CHEMISTRY, MEDICINAL
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Abstract

Exploiting a convenient and highly bioavailable ocular drug delivery approach is currently one of the hotspots in the pharmaceutical industry. Eyelid topical application is seen to be a valuable strategy in the treatment of chronic ocular diseases. To further elucidate the feasibility of eyelid topical administration as an alternative route for ocular drug delivery, pharmacokinetic and pharmacodynamic studies of pilocarpine were conducted in rabbits. Besides, a novel physiologically based pharmacokinetic (PBPK) model describing eyelid transdermal absorption and ocular disposition was developed in rabbits. The PBPK model of rabbits was extrapolated to human by integrating the drug-specific permeability parameters and human physiological parameters to predict ocular pharmacokinetic in human. After eyelid topical application of pilocarpine, the concentration of pilocarpine in iris peaked at 2 h with the value of 18,724 ng/g and the concentration in aqueous humor peaked at 1 h with the value of 1,363 ng/mL. Significant miotic effect were observed from 0.5 h to 4.5 h after eyelid topical application of pilocarpine in rabbits, while that were observed from 0.5 h to 3.5 h after eyedrop instillation. The proposed eyelid PBPK model was capable of reasonably predicting ocular exposure of pilocarpine after application on the eyelid skin and based on the PBPK model, the human ocular concentration was predicted to be 10-fold lower than that in rabbits. And it was suggested that drugs applied on the eyelid skin could transfer into the eyeball through corneal pathway and scleral pathway. This work could provide pharmacokinetic and pharmacodynamic data for the development of eyelid drug delivery, as well as the reference for clinical applications.

Abstract Image

眼睑局部应用匹洛卡品的生理学药代动力学模型和临床推断:综合研究。
开发方便且生物利用率高的眼部给药方法是当前制药业的热点之一。眼睑局部用药被认为是治疗慢性眼部疾病的重要策略。为了进一步阐明眼睑局部用药作为眼部给药替代途径的可行性,研究人员在兔子身上进行了皮洛卡品的药代动力学和药效学研究。此外,还在兔子身上建立了一个新的基于生理的药代动力学(PBPK)模型,用于描述眼睑透皮吸收和眼部处置。通过整合药物特异性渗透参数和人体生理参数,将兔子的 PBPK 模型外推至人体,从而预测人体的眼部药代动力学。皮洛卡品眼睑局部用药后,虹膜中的皮洛卡品浓度在 2 h 达到峰值,浓度值为 18,724 ng/g;眼房水中的皮洛卡品浓度在 1 h 达到峰值,浓度值为 1,363 ng/mL。在兔子眼睑局部注射皮洛卡品后的 0.5 至 4.5 小时内,观察到了明显的瞳孔效应,而在眼药水注射后的 0.5 至 3.5 小时内,观察到了明显的瞳孔效应。所提出的眼睑 PBPK 模型能够合理预测皮洛卡品在眼睑皮肤上使用后的眼部暴露量,根据 PBPK 模型预测,人的眼部浓度比兔子低 10 倍。研究结果表明,在眼睑皮肤上涂抹的药物可通过角膜途径和巩膜途径进入眼球。这项工作可为眼睑给药的开发提供药代动力学和药效学数据,并为临床应用提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.30
自引率
13.20%
发文量
367
审稿时长
33 days
期刊介绍: The Journal of Pharmaceutical Sciences will publish original research papers, original research notes, invited topical reviews (including Minireviews), and editorial commentary and news. The area of focus shall be concepts in basic pharmaceutical science and such topics as chemical processing of pharmaceuticals, including crystallization, lyophilization, chemical stability of drugs, pharmacokinetics, biopharmaceutics, pharmacodynamics, pro-drug developments, metabolic disposition of bioactive agents, dosage form design, protein-peptide chemistry and biotechnology specifically as these relate to pharmaceutical technology, and targeted drug delivery.
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