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首页> 外文期刊>Archives of Pharmacal Research >A novel surface-attached carvedilol solid dispersion with enhanced solubility and dissolution
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A novel surface-attached carvedilol solid dispersion with enhanced solubility and dissolution

机译:一种新型表面附着的卡维地洛固体分散体,具有更高的溶解度和溶解度

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摘要

A novel surface-attached, spray-dried solid dispersion containing poorly water-soluble carvedilol (CV) without any change in the crystallinity was prepared using water, polyvinylpyrrolidone (PVP K30) and Tween 80. The solid dispersion was optimized by investigating the effects of the weight ratios of Tween 80/PVP K30 and carrier/drug on the aqueous solubility of CV. The optimum solid dispersion consisted of a relatively low carrier to drug weight ratio: the weight ratio of CV/PVP K30/Tween 80 was 12/4/2. Unlike conventional methods of solid dispersion preparation, this method yielded CV-loaded solid dispersion with no change in the crystallinity of the drug as was evident from SEM, DSC and XRD. It was demonstrated that the solid dispersions prepared had hydrophilic carriers attached to the surface of the drug, thus changing it from a hydrophobic to a hydrophilic form without changing the crystalline form. The optimized solid dispersion improved the drug solubility and dissolution rate by about 11,500-fold and twofold, respectively. It was further suggested that this method of solid dispersion preparation is better than conventional methods in terms of environmental and industrial standpoints. Thus, it was concluded that CV-loaded solid dispersion prepared using this method would be of use for delivering poorly water-soluble CV with enhanced solubility and dissolution, but without crystalline changes.
机译:使用水,聚乙烯吡咯烷酮(PVP K30)和Tween 80制备了一种新型的表面附着,喷雾干燥的固体分散体,该分散体包含水溶性差的卡维地洛(CV),而结晶度没有任何变化。 Tween 80 / PVP K30与载体/药物的重量比对CV的水溶性的影响最佳的固体分散体由相对较低的载体与药物的重量比组成:CV / PVP K30 / Tween 80的重量比为12/4/2。与传统的固体分散体制备方法不同,此方法可产生CV负载的固体分散体,而药物的结晶度没有变化,这从SEM,DSC和XRD可以明显看出。已证明所制备的固体分散体具有附着于药物表面的亲水性载体,因此将其从疏水性改变为亲水性形式而不改变结晶形式。优化的固体分散体分别将药物溶解度和溶出度提高了约11,500倍和2倍。进一步表明,就环境和工业观点而言,这种固体分散体的制备方法优于常规方法。因此,得出的结论是,使用该方法制备的负载有CV的固体分散体可用于输送水溶性差的CV,并具有增强的溶解度和溶解度,但无结晶变化。

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