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Modified sprouted rice for modulation of curcumin crystallinity and dissolution enhancement by solid dispersion

机译:通过固体分散体改性姜黄素调节姜黄素结晶度和溶出度

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Sprouted grains, which is a natural polysaccharide, is the subject of increasing scientific interest due to many benefits for human health. The aim of the present work was to develop sprouted rice (SR) as a safe and useful material for application in dissolution enhancement of anticancer poorly water-soluble drugs such as curcumin by solid dispersions (SDs). SDs were prepared with pure SR and modified sprouted rice (MSR) by the melting method. The dissolution rate, drug crystallinity changes, molecular interactions and wettability were characterized and compared between the formulations. The use of MSR could result in a promising system for improving the dissolution rate of poorly water-soluble drugs. MSR could induce a greater amorphous state and improved wettability of drugs for dissolution enhancement compared to SR. Although both SR and MSR showed hydrogen bonding interaction, insignificant differences between SR and MSR were observed. We found that the crystallinity, interactions and wettability of the drug were significantly affected and modulated by MSR.
机译:由于对人类健康的许多益处而导致,萌芽的谷物是增加科学兴趣的主题。本作本作的目的是将发芽的稻米(SR)作为一种安全和有用的材料,用于溶解抗癌性且通过固体分散体(SDS)的抗癌剂如姜黄素(SDS)的溶解增强。通过熔化方法用纯Sr和改性的发芽水稻(MSR)制备SDS。表征并比较了制剂的溶出速率,药物结晶变化,分子相互作用和润湿性。 MSR的使用可能导致提高水溶性差的药物溶出速率的有希望的系统。与SR相比,MSR可以诱导更大的无定形状态,并改善溶解增强药物的润湿性。虽然Sr和MSR均显示氢键相互作用,但观察到SR和MSR之间的微不足道的差异。我们发现,药物的结晶度,相互作用和润湿性受到MSR的显着影响和调节。

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