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使用动态体外脂肪分解模型来合理设计难溶性药物的口服制剂:与体内数据的相关性以及与大鼠肠细胞内过程的关系。

Use of a dynamic in vitro lipolysis model to rationalize oral formulation development for poor water soluble drugs: correlation with in vivo data and the relationship to intra-enterocyte processes in rats.

作者信息

Dahan Arik, Hoffman Amnon

机构信息

Department of Pharmaceutics, School of Pharmacy Faculty of Medicine, The Hebrew University of Jerusalem, PO Box 12065, Jerusalem 91120, Israel.

出版信息

Pharm Res. 2006 Sep;23(9):2165-74. doi: 10.1007/s11095-006-9054-x. Epub 2006 Aug 11.

Abstract

PURPOSE

To examine the correlation between the in vitro solubilization process of lipophilic compounds from different lipid solutions and the corresponding in vivo oral bioavailability data. In particular, to assess the influence of intra-enterocyte processes (metabolism and lymphatic absorption) on this correlation.

MATERIALS AND METHODS

The dissolution of progesterone and vitamin D3 in long (LCT), medium (MCT) and short (SCT) chain triglyceride solutions were tested in a dynamic in vitro lipolysis model. The absolute oral bioavailability of the drugs from the tested formulations was investigated in rats. Vitamin D3 bioavailability was also examined following lymphatic transport blockage induced by cycloheximide (3 mg/kg).

RESULTS

The dynamic in vitro lipolysis experiments indicated a rank order of MCT > LCT > SCT for both progesterone and vitamin D3. The bioavailability of progesterone correlated with the in vitro data, despite its significant pre-systemic metabolism. For vitamin D3, an in vivo performance rank order of LCT > MCT > SCT was obtained. However, when the lymphatic transport was blocked the bioavailability of vitamin D3 correlated with in vitro data.

CONCLUSIONS

The in vitro lipolysis model is useful for optimization of oral lipid formulations even in the case of pre-systemic metabolism in the gut. However, when lymphatic transport is a significant route of absorption, the in vitro lipolysis data may not be predictive for actual in vivo absorption.

摘要

目的

研究不同脂质溶液中亲脂性化合物的体外溶解过程与相应的体内口服生物利用度数据之间的相关性。特别是评估肠内细胞过程(代谢和淋巴吸收)对这种相关性的影响。

材料与方法

在动态体外脂解模型中测试孕酮和维生素D3在长链(LCT)、中链(MCT)和短链(SCT)甘油三酯溶液中的溶解情况。在大鼠中研究受试制剂中药物的绝对口服生物利用度。在环己酰亚胺(3mg/kg)诱导的淋巴转运阻断后,也检测了维生素D3的生物利用度。

结果

动态体外脂解实验表明,孕酮和维生素D3的MCT>LCT>SCT排序。尽管孕酮有显著的首过代谢,但其生物利用度与体外数据相关。对于维生素D3,获得了LCT>MCT>SCT的体内性能排序。然而,当淋巴转运被阻断时,维生素D3的生物利用度与体外数据相关。

结论

体外脂解模型即使在肠道存在首过代谢的情况下,也有助于优化口服脂质制剂。然而,当淋巴转运是主要吸收途径时,体外脂解数据可能无法预测实际的体内吸收情况。

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