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首页> 外文期刊>International Journal of Pharmaceutics >Chemical stability and bioadhesive properties of an ester prodrug of Delta 9-tetrahydrocannabinol in poly(ethylene oxide) matrices: effect of formulation additives.
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Chemical stability and bioadhesive properties of an ester prodrug of Delta 9-tetrahydrocannabinol in poly(ethylene oxide) matrices: effect of formulation additives.

机译:Delta 9-四氢大麻酚在聚环氧乙烷基质中的酯前药的化学稳定性和生物粘附性能:配方添加剂的作用。

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摘要

The objective of the present research was to stabilize a novel hemiglutarate ester prodrug of Delta(9)-tetrahydrocannabinol (THC), in polyethylene oxide (PEO) polymeric matrices produced by hot-melt fabrication, for systemic delivery of THC through the oral transmucosal route. For this purpose, the influence of pH modifiers and antioxidants employed as stabilizing agents in these matrices was investigated. Based on the stability studies, two final formulations were made, and the stability of the active was assessed in these systems. In addition, the bioadhesive properties of PEO matrices were studied as a function of bioadhesive polymer type and concentration, contact time, drug loading and wetting time. Of all of the polymers investigated, bioadhesion was highest with Carbopol 971p. Bioadhesion increased with bioadhesive polymer concentration and wetting time to a certain level beyond which there was no further contribution. Both the contact time and drug loading influenced the bioadhesion. Severe degradation of the prodrug was observed during storage, even at room temperature (75% at the end of 3 months). Incorporation of the stabilizing agents in the PEO matrices reduced the degradation of the prodrug considerably. Citric acid was the most effective of all of the pH modifiers studied. Among the various antioxidants utilized, degradation was observed least in presence of BHT and ascorbic acid. Only 7.6% and 8.2% of prodrug degraded in these matrices, respectively, as compared to the PEO-only matrices (59.4%) at the end of 3 months at 25 degrees C/60% RH. The prodrug was very stable in both of the final formulations at the end of the 3 months at 40 degrees C/75% RH.
机译:本研究的目的是在通过热熔制备的聚环氧乙烷(PEO)聚合物基质中稳定Delta(9)-四氢大麻酚(THC)的新型半谷氨酸酯前药,以通过口腔粘膜途径全身性输送THC。 。为此,研究了在这些基质中用作稳定剂的pH调节剂和抗氧化剂的影响。基于稳定性研究,制备了两种最终制剂,并在这些系统中评估了活性成分的稳定性。此外,还研究了PEO基质的生物粘附性能,它是生物粘附聚合物类型和浓度,接触时间,载药量和润湿时间的函数。在所有研究的聚合物中,Carbopol 971p的生物粘附力最高。生物粘附力随生物粘附剂聚合物浓度和润湿时间增加到一定水平而增加,超过此水平则没有进一步的贡献。接触时间和载药量均影响生物粘附。即使在室温下,在储存过程中也观察到前药的严重降解(3个月末为75%)。在PEO基质中加入稳定剂可显着降低前药的降解。柠檬酸是所有研究的pH调节剂中最有效的。在使用的各种抗氧化剂中,至少在BHT和抗坏血酸的存在下观察到降解。与在25摄氏度/ 60%相对湿度下3个月末仅使用PEO的基质(59.4%)相比,在这些基质中仅分别降解了7.6%和8.2%的前药。在两个月的最终制剂中,前药在40℃/ 75%RH的3个月末时非常稳定。

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