Research Institute of Pharmaceutical Sicences, Musashino University, Nishi-Tokyo, Japan.
Drug Dev Ind Pharm. 2012 Mar;38(3):380-5. doi: 10.3109/03639045.2011.608680. Epub 2011 Sep 27.
The purpose of this research is to apply near infrared spectrometry (NIR) with chemoinformetrics to predict the change of crystalline properties of indomethacin (IMC) amorphous under various levels of relative humidity storage conditions. Stability test for amorphous and meta-stable polymorphic forms was performed in humidity controlled the modified 96-well quartz plates containing various kinds of saturated salt solutions (0-100% of relative humidity (RH)) by NIR spectroscopy. Amorphous form was obtained melt product to pour into liquid nitrogen and after then ground. Samples were stored at 25°C in the 6-well plates at various levels of RH. The spectra of the powder samples were measured by the reflectance FT-NIR spectrometer. The second derivative spectra of form α showed specific absorption peaks at 4980, 6036, 7296 and 8616 cm-1 and that of form γ showed those at 5020, 5028, 7344, 7428 and 8436 cm-1. After storage at less than 50% RH, the peak intensities at 5020, 5028, 7344, 7428 and 8436 cm-1 of the amorphous solid increased with increasing of storage time. However, the peak intensity at 4980, 6036 and 7296 cm-1 increased at more than 50% RH Please check and confirm the edit. The results suggested that at lower humidity, the IMC amorphous solid transformed into form γ, but it transformed into form α at more than high humidity. It is possible that crystalline stability of the pharmaceutical preparations could be predicted by using humidity controlled 96-well plates and reflectance NIR-chemoinformetric methods.
本研究旨在应用近红外光谱(NIR)与化学计量学来预测吲哚美辛(IMC)无定形在不同相对湿度储存条件下结晶性质的变化。通过 NIR 光谱法在湿度控制的改良 96 孔石英板中进行了非晶态和亚稳多晶形式的稳定性测试,该改良 96 孔石英板中含有各种饱和盐溶液(相对湿度(RH)0-100%)。非晶态是通过将熔融产物倒入液氮中然后研磨获得的。样品在 25°C 下储存在具有不同 RH 的 6 孔板中。通过反射式 FT-NIR 光谱仪测量粉末样品的光谱。α 形式的二阶导数光谱在 4980、6036、7296 和 8616 cm-1 处显示出特定的吸收峰,而 γ 形式在 5020、5028、7344、7428 和 8436 cm-1 处显示出那些吸收峰。在 RH 低于 50%的情况下储存后,非晶态的 5020、5028、7344、7428 和 8436 cm-1 处的峰强度随储存时间的增加而增加。然而,在 RH 超过 50%的情况下,4980、6036 和 7296 cm-1 处的峰强度增加。结果表明,在较低湿度下,IMC 无定形固体向 γ 形式转变,但在高湿度下向 α 形式转变。通过使用湿度控制的 96 孔板和反射 NIR-化学计量学方法,有可能预测药物制剂的结晶稳定性。