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非晶态吲哚美辛与聚乙烯醇共聚物通过特定分子间相互作用产生的抗增塑作用。

Anti-plasticizing effect of amorphous indomethacin induced by specific intermolecular interactions with PVA copolymer.

作者信息

Ueda Hiroshi, Aikawa Shohei, Kashima Yousuke, Kikuchi Junko, Ida Yasuo, Tanino Tadatsugu, Kadota Kazunori, Tozuka Yuichi

机构信息

Physicochemical and Preformulation, Applied Chemistry for Drug Discovery, Innovative Drug Discovery Research Laboratories, Shionogi & Company, Ltd., Toyonaka-shi, Osaka 561-0825, Japan; Laboratory of Formulation Design and Pharmaceutical Technology, Osaka University of Pharmaceutical Sciences, Takatsuki-shi, Osaka 569-1094, Japan.

Oral Formulation Department, Formulation Development Center, CMC Development Laboratories, Shionogi & Company, Ltd., Amagasaki-shi, Hyogo 660-0813, Japan.

出版信息

J Pharm Sci. 2014 Sep;103(9):2829-2838. doi: 10.1002/jps.24023. Epub 2014 Jun 2.

Abstract

The mechanism of how poly(vinyl alcohol-co-acrylic acid-co-methyl methacrylate) (PVA copolymer) stabilizes an amorphous drug was investigated. Solid dispersions of PVA copolymer, poly(vinyl pyrrolidone) (PVP), and poly(vinyl pyrrolidone-co-vinyl acetate) (PVPVA) with indomethacin (IMC) were prepared. The glass transition temperature (Tg)-proportion profiles were evaluated by differential scanning calorimetry (DSC). General Tg profiles decreasing with the IMC ratio were observed for IMC-PVP and IMC-PVPVA samples. An interesting antiplasticizing effect of IMC on PVA copolymer was observed; Tg increased up to 20% IMC ratio. Further addition of IMC caused moderate reduction with positive deviation from theoretical values. Specific hydrophilic and hydrophobic interactions between IMC and PVA copolymer were revealed by infrared spectra. The indole amide of IMC played an important role in hydrogen bonding with PVA copolymer, but not with PVP and PVPVA. X-ray diffraction findings and the endotherm on DSC profiles suggested that PVA copolymer could form a semicrystalline structure and a possibility of correlation of the crystallographic nature with its low hygroscopicity was suggested. PVA copolymer was able to prevent crystallization of amorphous IMC through both low hygroscopicity and the formation of a specific intermolecular interaction compared with that with PVP and PVPVA.

摘要

研究了聚乙烯醇-丙烯酸-甲基丙烯酸甲酯共聚物(PVA共聚物)稳定无定形药物的机制。制备了PVA共聚物、聚乙烯吡咯烷酮(PVP)和聚乙烯吡咯烷酮-醋酸乙烯酯共聚物(PVPVA)与吲哚美辛(IMC)的固体分散体。通过差示扫描量热法(DSC)评估玻璃化转变温度(Tg)-比例曲线。在IMC-PVP和IMC-PVPVA样品中观察到随着IMC比例增加Tg普遍降低的曲线。观察到IMC对PVA共聚物有有趣的抗增塑作用;在IMC比例高达20%时Tg升高。进一步添加IMC导致适度降低且与理论值有正偏差。红外光谱揭示了IMC与PVA共聚物之间特定的亲水和疏水相互作用。IMC的吲哚酰胺在与PVA共聚物形成氢键中起重要作用,但与PVP和PVPVA不形成氢键。X射线衍射结果和DSC曲线上的吸热峰表明PVA共聚物可形成半结晶结构,并暗示了其晶体性质与其低吸湿性之间存在关联的可能性。与PVP和PVPVA相比,PVA共聚物能够通过低吸湿性和形成特定的分子间相互作用来防止无定形IMC结晶。

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