Lindfors Lennart, Forssén Sara, Westergren Jan, Olsson Ulf
Pharmaceutical and Analytical R&D, AstraZeneca R&D Mölndal, Sweden.
J Colloid Interface Sci. 2008 Sep 15;325(2):404-13. doi: 10.1016/j.jcis.2008.05.034. Epub 2008 May 27.
The crystallization process in aqueous solutions of the drug bicalutamide and the effect of the polymer polyvinylpyrrolidone (PVP) have been studied. Results showed that PVP decreased the crystallization rate significantly in a system with PVP concentrations as low as 0.01% (w/w), without changing the polymorph formed. The crystal habit was altered already at PVP concentrations as low as 0.001% (w/w). Measurements made with self-diffusion NMR indicated that the decrease in crystallization rate was not because of a reduced supersaturation due to bicalutamide binding to PVP in solution. Furthermore, in experiments designed to specifically study crystal nucleation, the same nucleation rate was found in the absence and presence of PVP. Instead, PVP adsorbs to the crystals formed in solution and by doing so, the crystal growth rate is reduced. This was confirmed in separate experiments using bicalutamide nanocrystals. By combining theories describing classical nucleation and crystal growth, with some modifications, a consistent description of several independent experiments performed in polymer-free systems was obtained. From these experiments a crystal-water interfacial tension of 22.1 mN/m was extracted. We also analyze the interfacial tension of other crystalline organic solids and find that it varies approximately as the logarithm of the solubility. This finding is discussed within the framework of the Bragg-Williams regular solution theory where we also compare with the tension of liquid alkanes.
已对药物比卡鲁胺水溶液中的结晶过程以及聚合物聚乙烯吡咯烷酮(PVP)的作用进行了研究。结果表明,在PVP浓度低至0.01%(w/w)的体系中,PVP显著降低了结晶速率,且未改变形成的多晶型物。在PVP浓度低至0.001%(w/w)时,晶体习性就已改变。用自扩散核磁共振进行的测量表明,结晶速率的降低并非由于溶液中比卡鲁胺与PVP结合导致过饱和度降低。此外,在专门设计用于研究晶体成核的实验中,在有无PVP的情况下发现了相同的成核速率。相反,PVP吸附到溶液中形成的晶体上,从而降低了晶体生长速率。这在使用比卡鲁胺纳米晶体的单独实验中得到了证实。通过结合描述经典成核和晶体生长的理论,并进行一些修改,得到了对在无聚合物体系中进行的几个独立实验的一致描述。从这些实验中提取出晶体 - 水界面张力为22.1 mN/m。我们还分析了其他结晶有机固体的界面张力,发现其变化大致与溶解度的对数成正比。在布拉格 - 威廉姆斯正则溶液理论的框架内讨论了这一发现,我们还将其与液态烷烃的表面张力进行了比较。