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含亮丙瑞林电喷雾微球的 A 级体外-体内相关性研究:物理化学、药代动力学和药效学评价

Development of Level A In Vitro-Vivo Correlation for Electrosprayed Microspheres Containing Leuprolide: Physicochemical, Pharmacokinetic, and Pharmacodynamic Evaluation.

作者信息

Lee Dong-Seok, Kang Dong Wook, Choi Go-Wun, Choi Han-Gon, Cho Hea-Young

机构信息

College of Pharmacy, CHA University, 335 Pangyo-ro, Bundang-gu, Seongnam-si, Gyeonggi-do 13488, Korea.

College of Pharmacy & Institute of Pharmaceutical Science and Technology, Hanyang University, 55 Hanyangdaehak-ro, Sangnok-gu, Ansan 426-791, Korea.

出版信息

Pharmaceutics. 2020 Jan 2;12(1):36. doi: 10.3390/pharmaceutics12010036.

Abstract

This study optimized the preparation of electrosprayed microspheres containing leuprolide and developed an in vitro-in vivo correlation (IVIVC) model that enables mutual prediction between in vitro and in vivo dissolution. The pharmacokinetic (PK) and pharmacodynamic (PD) study of leuprolide was carried out in normal rats after subcutaneous administration of electrosprayed microspheres. The parameters of the IVIVC model were estimated by fitting the PK profile of Lucrin depot to the release compartment of the IVIVC model, thus the in vivo dissolution was predicted from the in vitro dissolution. From this correlation, the PK profile of leuprolide was predicted from the results of in vivo dissolution. The IVIVC model was validated by estimating percent prediction error (%PE) values. Among prepared microspheres, an optimal formulation was selected using the IVIVC model. The maximum plasma concentration and the area under the plasma concentration-time curve from zero to infinity from the predicted PK profile were 4.01 ng/mL and 52.52 h·ng/mL, respectively, and from the observed PK profile were 4.14 ng/mL and 56.95 h·ng/mL, respectively. The percent prediction error values of all parameters did not exceed 15%, thus the IVIVC model satisfies the validation criteria of the Food and Drug Administration (FDA) guidance. The PK/PD evaluation suggests that the efficacy of OL5 is similar to Lucrin depot, but the formulation was improved by reducing the initial burst release.

摘要

本研究优化了含亮丙瑞林的电喷雾微球的制备,并建立了体外-体内相关性(IVIVC)模型,该模型能够实现体外和体内溶出度之间的相互预测。在皮下注射电喷雾微球后,对正常大鼠进行了亮丙瑞林的药代动力学(PK)和药效学(PD)研究。通过将Lucrin长效注射剂的PK曲线拟合到IVIVC模型的释放隔室来估计IVIVC模型的参数,从而根据体外溶出度预测体内溶出度。根据这种相关性,从体内溶出度结果预测亮丙瑞林的PK曲线。通过估计预测误差百分比(%PE)值对IVIVC模型进行验证。在制备的微球中,使用IVIVC模型选择了最佳配方。预测的PK曲线的最大血浆浓度和从零到无穷大的血浆浓度-时间曲线下面积分别为4.01 ng/mL和52.52 h·ng/mL,观察到的PK曲线的分别为4.14 ng/mL和56.95 h·ng/mL。所有参数的预测误差百分比值均未超过15%,因此IVIVC模型符合美国食品药品监督管理局(FDA)指南的验证标准。PK/PD评估表明,OL5的疗效与Lucrin长效注射剂相似,但通过减少初始突释改善了制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a07e/7022573/ad73b41d1d36/pharmaceutics-12-00036-g001.jpg

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