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Effect of Counterion on the Solid State Photodegradation Behavior of Prazosin Salts

机译:抗衡离子对吡唑嗪盐固态光降解行为的影响

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摘要

The effect of counterion was evaluated on the photodegradation behavior of six prazosin salts, viz., prazosin hydrochloride anhydrous, prazosin hydrochloride polyhydrate, prazosin tosylate anhydrous, prazosin tosylate monohydrate, prazosin oxalate dihydrate, and prazosin camsylate anhydrous. The salts were subjected to UV–Visible irradiation in a photostability test chamber for 10 days. The samples were analyzed for chemical changes by a specific stability-indicating high-performance liquid chromatography method. pH of the microenvironment was determined in 10% w/v aqueous slurry of the salts. The observed order of photostability was: prazosin hydrochloride anhydrous > prazosin camsylate anhydrous ∼ prazosin-free base > prazosin hydrochloride polyhydrate > prazosin tosylate anhydrous > prazosin oxalate dihydrate ∼ prazosin tosylate monohydrate. Multivariate analysis of the photodegradation behavior suggested predominant contribution of the state of hydration and also intrinsic photosensitivity of the counterion. Overall, hydrated salts showed higher photodegradation compared to their anhydrous counterparts. Within the anhydrous salts, aromatic and carbonyl counterion-containing salts showed higher susceptibility to light. The pH of microenvironment furthermore contributed to photodegradation of prazosin salts, especially for drug counterions with inherent higher pH. The study reveals importance of selection of a suitable drug salt form for photosensitive drugs during preformulation stage of drug development.
机译:评估了抗衡离子对六种哌唑嗪盐的光降解行为的影响,即无水哌唑嗪盐酸盐,多氢吡唑啉盐酸盐水合物,无水吡唑啉甲苯磺酸盐,无水吡唑啉甲苯磺酸盐,无水吡唑啉草酸盐二水合物和无水吡唑啉草酸盐。将这些盐在光稳定性测试室中进行UV-可见辐射10天。通过特定的稳定性指示高效液相色谱法分析样品的化学变化。在10%w / v盐水溶液中测定微环境的pH。观察到的光稳定性顺序为:无水哌唑嗪盐>无水吡唑啉cam>无水吡唑啉>无吡唑啉碱>无水吡唑啉盐>无水唑啉>无水草苷>二水草酸酯草酸盐>无水草苷甲苯磺酸盐。对光降解行为的多变量分析表明,水合状态的主要贡献以及抗衡离子的固有光敏性。总体而言,与无水盐相比,水合盐显示出更高的光降解性。在无水盐中,含芳族和羰基抗衡离子的盐对光的敏感性更高。微环境的pH值进一步促进了哌唑嗪盐的光降解,特别是对于固有pH较高的药物抗衡离子而言。这项研究揭示了在药物开发的预制剂阶段为光敏药物选择合适的药物盐形式的重要性。

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