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温度和湿度对司他夫定非晶态向晶态转变的影响。

The effect of temperature and moisture on the amorphous-to-crystalline transformation of stavudine.

作者信息

Strydom Schalk, Liebenberg Wilna, Yu Lian, de Villiers Melgardt

机构信息

Unit for Drug Research and Development, Faculty of Health Sciences, North-West University, Potchefstroom 2520, South Africa.

出版信息

Int J Pharm. 2009 Sep 8;379(1):72-81. doi: 10.1016/j.ijpharm.2009.06.012. Epub 2009 Jun 18.

Abstract

Stavudine is a nucleoside reverse transcriptase inhibitor active against HIV, and is known to exist in two polymorphic forms designated as forms I and II, and a hydrate form III. An amorphous solid of stavudine was successfully prepared and characterized during this investigation. A comprehensive evaluation of the stability of this amorphous solid showed that the amorphous solid transforms to either form II (anhydrous) or form III (hydrate) when exposed to temperature, in the absence or presence of moisture, respectively. The amorphous-to-hydrate transformation occurred at relatively low RH (>32%) and led to the formation of crystal aggregates of the hydrated form. Steady state growth rate analyses also showed that the amorphous-to-crystalline transformation occurs at a greater rate in the presence of moisture, compared to the transformation at the same temperature in a dry environment. Crystal growth studies showed that it is possible to stabilize the amorphous solid of stavudine against crystal transformations in the absence of moisture by coating it with poly(methyl methacrylate). However, this polymer coating could not prevent crystal growth from the amorphous solid during exposure to moisture.

摘要

司他夫定是一种对HIV有效的核苷类逆转录酶抑制剂,已知存在两种多晶型形式,分别称为I型和II型,以及一种水合物形式III型。在本研究中成功制备并表征了司他夫定的无定形固体。对该无定形固体稳定性的综合评估表明,在不存在或存在水分的情况下,当暴露于温度时,无定形固体分别转变为II型(无水)或III型(水合物)。无定形到水合物的转变在相对较低的相对湿度(>32%)下发生,并导致水合形式的晶体聚集体形成。稳态生长速率分析还表明,与在干燥环境中相同温度下的转变相比,在有水分存在的情况下,无定形到晶体的转变速率更高。晶体生长研究表明,通过用聚甲基丙烯酸甲酯涂覆,可以在无水分的情况下稳定司他夫定的无定形固体以防止晶体转变。然而,这种聚合物涂层在暴露于水分期间不能阻止无定形固体的晶体生长。

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