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通过药物评价表征的酮洛芬皮肤贴剂中活性药物成分的分子状态

Molecular State of Active Pharmaceutical Ingredients in Ketoprofen Dermal Patches Characterized by Pharmaceutical Evaluation.

作者信息

Azuma Motoshige, Fujii Mika, Inoue Motoki, Hisada Hiroshi, Koide Tatsuo, Kemper Mark, Yamamoto Yoshihisa, Suzuki Naoto, Suzuki Toyofumi, Fukami Toshiro

机构信息

Department of Molecular Pharmaceutics, Meiji Pharmaceutical University.

Division of Drugs, National Institute of Health Sciences.

出版信息

Biol Pharm Bull. 2018;41(9):1348-1354. doi: 10.1248/bpb.b18-00019.

Abstract

The molecular states of ketoprofen and the interaction between ketoprofen and other pharmaceutical excipients in the matrix layer were examined to determine their effect on the pharmaceutical properties of original and generic ketoprofen dermal patches (generic patches A and B). Molecular states of ketoprofen were evaluated using polarized light microscopy, Raman spectroscopy and powder X-ray diffraction. For the original ketoprofen patch, crystalline components were not observed in the matrix layer. However, crystalline ketoprofen was observed in the two generic ketoprofen patches. Moreover, the ketoprofen exhibited hydrogen bonding with the pharmaceutical excipients or patch materials in the generic products. Skin permeation of ketoprofen from the patches was evaluated using hairless mouse skin. Twelve hours after application, the original patch demonstrated the highest level of cumulative skin permeation of ketoprofen. This was followed by generic patch B while generic patch A showed the lowest level of permeation. Fluxes were calculated from the skin permeation profiles. The original patch was approx. 2.4-times faster compared with generic patch A and approximately 1.9-times faster compared with generic patch B. This investigation suggested that pharmaceutical properties such as skin permeability for these types of products are affected by the precipitation of crystalline ketoprofen in the matrix layer and the interaction of ketoprofen with the pharmaceutical excipients or patch materials.

摘要

研究了酮洛芬的分子状态以及酮洛芬与基质层中其他药用辅料之间的相互作用,以确定它们对原研和仿制药酮洛芬皮肤贴片(仿制药贴片A和B)药学性质的影响。使用偏光显微镜、拉曼光谱和粉末X射线衍射评估酮洛芬的分子状态。对于原研酮洛芬贴片,在基质层中未观察到结晶成分。然而,在两种仿制药酮洛芬贴片中观察到了结晶酮洛芬。此外,在仿制药产品中,酮洛芬与药用辅料或贴片材料形成了氢键。使用无毛小鼠皮肤评估了酮洛芬从贴片中的皮肤渗透情况。给药12小时后,原研贴片显示出酮洛芬的累积皮肤渗透水平最高。其次是仿制药贴片B,而仿制药贴片A的渗透水平最低。根据皮肤渗透曲线计算通量。原研贴片的速度比仿制药贴片A快约2.4倍,比仿制药贴片B快约1.9倍。该研究表明,这类产品的皮肤渗透性等药学性质受基质层中结晶酮洛芬的析出以及酮洛芬与药用辅料或贴片材料相互作用的影响。

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