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一种评估与辅料接触对无定形药物表面结晶影响的方法。

A method to evaluate the effect of contact with excipients on the surface crystallization of amorphous drugs.

作者信息

Zhang Si-Wei, Yu Lian, Huang Jun, Hussain Munir A, Derdour Lotfi, Qian Feng, de Villiers Melgardt M

机构信息

School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, Wisconsin, 53705-2222, USA.

出版信息

AAPS PharmSciTech. 2014 Dec;15(6):1516-26. doi: 10.1208/s12249-014-0178-8. Epub 2014 Jul 19.

Abstract

Amorphous drugs are used to improve the solubility, dissolution, and bioavailability of drugs. However, these metastable forms of drugs can transform into more stable, less soluble, crystalline counterparts. This study reports a method for evaluating the effect of commonly used excipients on the surface crystallization of amorphous drugs and its application to two model amorphous compounds, nifedipine and indomethacin. In this method, amorphous samples of the drugs were covered by excipients and stored in controlled environments. An inverted light microscope was used to measure in real time the rates of surface crystal nucleation and growth. For nifedipine, vacuum-dried microcrystalline cellulose and lactose monohydrate increased the nucleation rate of the β polymorph from two to five times when samples were stored in a desiccator, while D-mannitol and magnesium stearate increased the nucleation rate 50 times. At 50% relative humidity, the nucleation rates were further increased, suggesting that moisture played an important role in the crystallization caused by the excipients. The effect of excipients on the crystal growth rate was not significant, suggesting that contact with excipients influences the physical stability of amorphous nifedipine mainly through the effect on crystal nucleation. This effect seems to be drug specific because for two polymorphs of indomethacin, no significant change in the nucleation rate was observed under the excipients.

摘要

无定形药物用于改善药物的溶解度、溶出度和生物利用度。然而,这些亚稳态药物形式可转变为更稳定、溶解度更低的结晶形式。本研究报告了一种评估常用辅料对无定形药物表面结晶影响的方法,并将其应用于两种模型无定形化合物,硝苯地平和吲哚美辛。在该方法中,药物的无定形样品被辅料覆盖并储存在可控环境中。使用倒置光学显微镜实时测量表面晶体成核和生长速率。对于硝苯地平,当样品储存在干燥器中时,真空干燥的微晶纤维素和一水乳糖使β晶型的成核速率提高了2至5倍,而D-甘露醇和硬脂酸镁使成核速率提高了50倍。在50%相对湿度下,成核速率进一步提高,表明水分在辅料引起的结晶过程中起重要作用。辅料对晶体生长速率的影响不显著,表明与辅料接触主要通过对晶体成核的影响来影响无定形硝苯地平的物理稳定性。这种影响似乎具有药物特异性,因为对于吲哚美辛的两种晶型,在辅料作用下未观察到成核速率的显著变化。

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