首页> 美国卫生研究院文献>Pharmacy: Journal of Pharmacy Education and Practice >Enhancing the Solubility of Curcumin Using a Solid Dispersion System with Hydroxypropyl-β-Cyclodextrin Prepared by Grinding Freeze-Drying and Common Solvent Evaporation Methods
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Enhancing the Solubility of Curcumin Using a Solid Dispersion System with Hydroxypropyl-β-Cyclodextrin Prepared by Grinding Freeze-Drying and Common Solvent Evaporation Methods

机译:使用用研磨冷冻干燥和普通溶剂蒸发方法制备具有固体分散体系使用固体分散体系的固体分散体系的溶解度。

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摘要

Cyclodextrins (CDs) and their derivatives significantly increase drug solubility by forming drug/CD complexes known as solid dispersions (SDs), which consist of an inclusion complex (IC), where the drug is entrapped within the CD cavity, and a non-IC. Here, the SDs of curcumin (CUR) and hydroxypropyl-β-cyclodextrin (HPβCD) were prepared using the grinding, freeze-drying (FD), and common solvent evaporation (CSE) methods and were physicochemically characterized using solubility, powder X-ray diffraction, Fourier transform infrared, differential scanning calorimetry, and dissolution studies. The second or higher order complex of CUR-HPβCD indicated the co-existence of ICs and non-ICs known as the SD system. When comparing the soluble drug amount with CUR crystals, the solubility of SDs was enhanced by up to 299-, 180-, and 489-fold, corresponding to the ground mixtures (GMs), freeze-drying mixtures (FDs), and common solvent evaporation mixtures (CSEs), respectively. The total transformation into the amorphous phase of CUR was observed in GMs and in CSE12, CSE14, and CSE18. The drug was well dispersed within HPβCD in GMs and CSEs, suggesting the formation of hydrogen bonds between CUR and HPβCD, whereas the dispersed behavior of FDs was similar to that of physical mixtures. In SDs, the melting temperature of CUR was in an increased order of CUR in 1:2 ICs, CUR in 1:1 ICs, and CUR crystals. The dissolution rate of CUR was positively improved as the amount of HPβCD in SDs increased. The SD system consisting of CUR and HPβCD significantly increased the drug solubility compared to ICs.
机译:环糊精(Cds)及其衍生物通过形成称为固体分散体(SDS)的药物/ Cd络合物而显着提高药物溶解度,其包括包含复合物(IC)的药物/ Cd络合物,其中药物被捕获在CD腔内和非IC 。这里,使用研磨,冷冻干燥(FD)和常见的溶剂蒸发(CSE)方法制备姜黄素(Cur)和羟丙基-β-环糊精(HPβCD)的SDS,并使用溶解性,粉末X射线进行物理化学表征。衍射,傅里叶变换红外,差示扫描量热法,以及溶出研究。 Cur-HPβCD的第二个或高阶复合物表示称为SD系统的IC和非IC的共存。当用Cur晶体比较可溶性药物量时,对应于接地混合物(GMS),冷冻干燥混合物(FDS)和普通溶剂,SDS的溶解度高达299-,180-和489倍。分别蒸发混合物(CSE)。在GMS和CSE12,CSE14和CSE18中观察到CSE和CSE18中的CSE中的无定形阶段的总转化。该药物在GMS和CSE中良好地分散在HPβCD中,表明在CU和HPβCD之间形成氢键,而FDS的分散行为与物理混合物的分散行为类似。在SDS中,Cur的熔化温度在1:2 IC中的Cur,Cur在1:1 IC中的Cur和Cur晶体中的增加。随着SDS中HPβCD的量增加,Cur的溶出速率正得到改善。与IC相比,由Cur和HPβCD组成的SD系统显着增加了药物溶解度。

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