Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University , West Lafayette, IN , USA .
Pharm Dev Technol. 2014 Dec;19(8):976-86. doi: 10.3109/10837450.2013.846374. Epub 2013 Nov 6.
We have investigated the physical stability of amorphous curcumin dispersions and the role of curcumin-polymer intermolecular interactions in delaying crystallization. Curcumin is an interesting model compound as it forms both intra and intermolecular hydrogen bonds in the crystal. A structurally diverse set of amorphous dispersion polymers was investigated; poly(vinylpyrrolidone), Eudragit E100, carboxymethyl cellulose acetate butyrate, hydroxypropyl methyl cellulose (HPMC) and HPMC-acetate succinate. Mid-infrared spectroscopy was used to determine and quantify the extent of curcumin-polymer interactions. Physical stability under different environmental conditions was monitored by powder X-ray diffraction. Curcumin chemical stability was monitored by UV-Vis spectroscopy. Isolation of stable amorphous curcumin was difficult in the absence of polymers. Polymers proved to be effective curcumin crystallization inhibitors enabling the production of amorphous solid dispersions; however, the polymers showed very different abilities to inhibit crystallization during long-term storage. Curcumin intramolecular hydrogen bonding reduced the extent of its hydrogen bonding with polymers; hence most polymers were not highly effective crystallization inhibitors. Overall, polymers proved to be crystallization inhibitors, but inhibition was limited due to the intramolecular hydrogen bonding in curcumin, which leads to a decrease in the ability of the polymers to interact at a molecular level.
我们研究了无定形姜黄素分散体的物理稳定性以及姜黄素-聚合物分子间相互作用在延迟结晶中的作用。姜黄素是一种很有趣的模型化合物,因为它在晶体中形成内分子和分子间氢键。研究了一组结构多样的无定形分散聚合物;聚乙烯吡咯烷酮、Eudragit E100、醋酸丁酸纤维素、羟丙基甲基纤维素(HPMC)和 HPMC-琥珀酸酯。中红外光谱用于确定和量化姜黄素-聚合物相互作用的程度。通过粉末 X 射线衍射监测不同环境条件下的物理稳定性。通过紫外-可见光谱监测姜黄素的化学稳定性。在没有聚合物的情况下,很难分离出稳定的无定形姜黄素。聚合物被证明是有效的姜黄素结晶抑制剂,能够生产无定形固体分散体;然而,在长期储存过程中,这些聚合物表现出了非常不同的抑制结晶能力。姜黄素分子内氢键减少了其与聚合物氢键的程度;因此,大多数聚合物不是非常有效的结晶抑制剂。总的来说,聚合物被证明是结晶抑制剂,但由于姜黄素的分子内氢键,抑制作用有限,这导致聚合物在分子水平上相互作用的能力下降。