Laboratorium voor Farmacotechnologie en Biofarmacie, Katholieke Universiteit Leuven, Campus Gasthuisberg, O&N II, Herestraat 49 bus 921, B-3000 Leuven, Belgium.
Eur J Pharm Sci. 2009 Dec 8;38(5):489-97. doi: 10.1016/j.ejps.2009.09.013. Epub 2009 Sep 24.
The interconversion of the ethanolate, hydrate and amorphous form of TMC114 ((3-[(4-amino-benzenesulfonyl)-isobutyl-amino]-1-benzyl-2-hydroxypropyl)-carbamic acid hexahydrofuro-[2,3-b]furan-3-yl ester) in open conditions was characterized. TMC114 hydrate and ethanolate form isostructural channel solvates. The crystal structure of TMC114 was obtained from single crystal X-ray diffraction, confirming that it is a channel solvate. Ethanol and water can exchange with one another. TMC114 ethanolate converts into TMC114 hydrate at moderate or high relative humidity (RH) at 25 degrees C, and it converts back into the ethanolate in ethanol atmosphere. The hydration level of the hydrate is determined by the environmental humidity. TMC114 hydrate collapses to the amorphous product when water is removed by drying at low RH or increasing temperature. TMC114 ethanolate becomes amorphous at elevated temperature in a dry environment below the desolvation temperature. Amorphous TMC114 obtained by dehydrating the hydrate during storage at room temperature/<5% RH, by increasing the temperature, or via desolvating the ethanolate by heating, converts into the hydrate at moderate or high RH at ambient conditions, and into TMC114 ethanolate in an ethanol atmosphere. Under ambient conditions, TMC114 ethanolate may convert into the hydrate, whereas the opposite will not occur under these conditions. The amorphous form, prepared by melting-quenching shows a limited water uptake. Whereas TMC114 ethanolate is stable in the commercialized drug product, special conditions can trigger its conversion.
TMC114((3-[(4-氨基苯磺酰基)-异丁基氨基]-1-苄基-2-羟基丙基)-氨基甲酸六氢呋喃并[2,3-b]呋喃-3-基酯)的乙醇盐、水合物和无定形形式在开放条件下的相互转化得到了表征。TMC114 水合物和乙醇盐形成同构的通道溶剂化物。TMC114 的晶体结构通过单晶 X 射线衍射获得,证实它是一种通道溶剂化物。乙醇和水可以相互交换。TMC114 乙醇盐在 25°C 下在中等或高相对湿度 (RH) 下转化为 TMC114 水合物,并且在乙醇气氛中转化回乙醇盐。水合物的水合水平由环境湿度决定。TMC114 水合物在低 RH 或升高温度下干燥时会脱水塌陷成无定形产物。TMC114 乙醇盐在干燥环境下(低于脱溶温度)或在升高温度下会在无水环境下变成无定形,在无定形 TMC114 是通过在室温下储存/<5% RH 期间脱水、通过升高温度或通过加热脱溶乙醇盐获得的,在中等或高 RH 条件下在环境条件下转化为水合物,并在乙醇气氛中转化为 TMC114 乙醇盐。在环境条件下,TMC114 乙醇盐可能会转化为水合物,而在这些条件下则不会发生相反的情况。通过熔融淬火制备的无定形形式显示出有限的水分吸收。虽然 TMC114 乙醇盐在商业化药物产品中是稳定的,但特殊条件可能会引发其转化。