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通过热熔法制备的聚合物基质系统中Δ-四氢大麻酚前药的化学稳定性:微环境pH的作用

Chemical stabilization of a Δ-tetrahydrocannabinol prodrug in polymeric matrix systems produced by a hot-melt method: Role of microenvironment pH.

作者信息

Munjal Manish, ElSohly Mahmoud A, Repka Michael A

机构信息

Department of Pharmaceutics, School of Pharmacy, The University of Mississippi, University, MS.

Research Institute of Pharmaceutical Sciences, The University of Mississippi, University, MS.

出版信息

AAPS PharmSciTech. 2006 Sep;7(3):E114-E125. doi: 10.1208/pt070371. Epub 2017 Mar 8.

Abstract

This research was conducted in order to fabricate stable polyethylene oxide (PEO)-based transmucosal systems of a Δ-tetrahydrocannabinol (THC) prodrug, a hemisuccinate ester, using a hot-melt method. Since Δ-tetrahydrocannabinol (THC-HS) was heat labile, a series of processing aids were evaluated in order to facilitate hot-melt production at lower temperatures, thereby reducing THC-HS degradation. The stability of THC-HS was influenced both by the processing conditions such as heating time and temperature, and the postprocessing storage conditions. The type of formulation additive also affected the extent of degradation. In the presence of polyethylene glycol (PEG)-400, the percentage of relative degradation of THC-HS to THC was 13.5% and 49.4% at 80°C and 120°C, respectively. In contrast, incorporation of vitamin E succinate (VES) reduced processing degradation to 2.1% and 9.2%, respectively, under the same conditions. Severe degradation of THC-HS was observed during storage, even under freezing conditions (-18°C). A VES-Noveon AA-1 combination was observed to best stabilize the prodrug systems both during processing and postprocessing. Stabilization of THC-HS was achieved in these polyethylene oxide matrices at 4°C, with almost 90% of theoretical drug remaining for up to 8 months. Investigation of the pH effect revealed that the pH of the microenvironment in these polymeric systems could be modulated to significantly improve the stability of THC-HS, degradation being the least in a relatively acidic medium.

摘要

本研究旨在采用热熔法制备基于聚环氧乙烷(PEO)的Δ-四氢大麻酚(THC)前药(一种半琥珀酸酯)的稳定经粘膜给药系统。由于Δ-四氢大麻酚(THC-HS)对热不稳定,因此评估了一系列加工助剂,以便在较低温度下促进热熔生产,从而减少THC-HS的降解。THC-HS的稳定性受加热时间和温度等加工条件以及后处理储存条件的影响。制剂添加剂的类型也会影响降解程度。在聚乙二醇(PEG)-400存在下,THC-HS相对于THC的相对降解百分比在80°C和120°C时分别为13.5%和49.4%。相比之下,在相同条件下,加入维生素E琥珀酸酯(VES)可将加工降解分别降低至2.1%和9.2%。即使在冷冻条件(-18°C)下储存期间,也观察到THC-HS严重降解。观察到VES-Noveon AA-1组合在加工和后处理过程中能最好地稳定前药系统。在这些聚环氧乙烷基质中,在4°C下实现了THC-HS的稳定化,在长达8个月的时间里,几乎有90%的理论药物残留。对pH效应的研究表明,这些聚合物系统中微环境的pH可被调节以显著提高THC-HS的稳定性,在相对酸性介质中降解最少。

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