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The Effect of Cooling on the Degree of Crystallinity Solid-State Properties and Dissolution Rate of Multi-Component Hot-Melt Extruded Solid Dispersions

机译:冷却对多组分热熔挤出固体分散体结晶度固态性质和溶解速率的影响

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摘要

The effect of cooling on the degree of crystallinity, solid-state and dissolution properties of multi-component hot-melt extruded solid dispersions [SD] is of great interest for the successful formulation of amorphous SDs and is an area that is unreported, especially in the context of improving the stability of these specific systems. The thermal solid-state properties, degree of crystallinity, drug–polymer interactions, solubility and physical stability over time were investigated. X-ray powder diffraction [XRPD] and hyper differential scanning calorimetry [DSC] confirmed that indomethacin [INM] was converted to the amorphous state; however, the addition of poloxamer 407 [P407] had a significant effect on the degree of crystallinity and the solubility of the SD formulations. Spectroscopy studies identified the mechanism of interaction and solubility studies, showing a higher dissolution rate compared to amorphous and pure INM in pH 1.2 with a kinetic solubility of 20.63 µg/mL and 34.7 µg/mL after 3 and 24 h. XRPD confirmed that INM remained amorphous after 5 months stability testing in solid solutions with Poly(vinylpyrrolidone-co-vinyl acetate) [PVP VA64] and Plasdone S-630 [PL-S630]. Although cooling had a significant effect on the degree of crystallinity and on solubility of INM, the cooling method used did not have any significant effect on the amorphous stability of INM over time.
机译:冷却对多组分热熔挤出固体分散体[SD]的结晶度,固态和溶解性能的影响对于成功配制无定形SD极为重要,而且这一领域尚未报道,特别是在改善这些特定系统的稳定性的环境。随时间推移研究了热固态性质,结晶度,药物-聚合物相互作用,溶解度和物理稳定性。 X射线粉末衍射[XRPD]和超差示扫描量热法[DSC]证实吲哚美辛[INM]已转化为非晶态。但是,泊洛沙姆407 [P407]的添加对SD配方的结晶度和溶解度有重大影响。光谱学研究确定了相互作用的机制和溶解度研究,与pH 1.2的无定形和纯INM相比,溶解速率更高,在3和24小时后的动力学溶解度分别为20.63 µg / mL和34.7 µg / mL。 XRPD证实,在使用聚(乙烯基吡咯烷酮-乙酸乙烯酯)[PVP VA64]和Plasdone S-630 [PL-S630]的固溶体中进行5个月的稳定性测试后,INM仍为非晶态。尽管冷却对INM的结晶度和溶解度有显着影响,但是所使用的冷却方法对INM随时间的非晶态稳定性没有显着影响。

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