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Solubility Enhancement of Paroxetine Hydrochloride by Hydrotropy

机译:水溶层盐酸盐酸盐的溶解度提高

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The present work is focused to develop a novel technique for selecting hydrotropic agents to enhance the solubility of low soluble drug, paroxetine hydrochloride. Paroxetine hydrochloride was estimated using UV spectrophotometry at 293 nm and hydrotropic agents did not interfere with drug estimation. In order to elucidate the interaction, a UV spectrophotometric method was developed. As the concentration of the hydrotropic agent increased, the solubility of paroxetine hydrochloride increased linearly for nicotinamide, citric acid and tartaric acid at 25 degrees and 37 degrees. Neutralization by pH adjustment technique was employed with hydrotropic agents to prepare hydrotropes. Each hydrotrope was characterized by melting point, Fourier transform infrared spectroscopy, solubility and dissolution. The in vitro dissolution studies showed that paroxetine hydrochloride release was enhanced from the prepared hydrotropes ( 80%) in comparison to the pure drug (37%) in 40 min. In vitro dissolution studies of tablets prepared using hydrotropes demonstrated two times increase in drug release ( 88%) in comparison to the marketed tablets (56%) in 40 min.
机译:本作本作的重点是开发一种用于选择水溶剂的新技术,以增强低可溶性药物,盐酸盐酸盐盐酸盐的溶解度。使用紫外分光光度法在293nm处估计帕罗西汀估计,水辐射剂不会干扰药物估计。为了阐明相互作用,开发了一种紫外分光光度法。随着水溶剂的浓度增加,盐酸盐盐酸盐的溶解度在25度和37度的烟酰胺,柠檬酸和酒石酸线性增加。用pH调节技术中和用水提刺激剂制备水辐射。通过熔点,傅里叶变换红外光谱,溶解度和溶解,每个水路术表征。体外溶出性研究表明,与纯药物(37%)在40分钟内,从制备的水磨机(& 80%)中增强了盐酸盐释放。使用水辐射制备的片剂的体外溶解研究表明,与40分钟内的市场平板电脑(56%)相比,药物释放(& 88%)增加了两倍。

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