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药物载入对脂质基质中固体分散体的结构和释放特性的影响。

The influence of drug incorporation on the structure and release properties of solid dispersions in lipid matrices.

作者信息

Khan Nurzalina, Craig Duncan Q M

机构信息

School of Pharmacy, University of London, London WC1N 1AX, UK.

出版信息

J Control Release. 2003 Dec 12;93(3):355-68. doi: 10.1016/j.jconrel.2003.09.006.

Abstract

The effect of incorporating caffeine and paracetamol on the structure and behaviour of Gelucire 50/13 has been studied with a view to establishing whether the choice of drug influences the solid structure and release mechanism. Dispersions containing up to 30% w/w drug were prepared and studied using differential scanning calorimetry (DSC), hot stage differential interference contrast microscopy (HSM), dissolution studies and erosion, water uptake (WU) and diameter change measurements. Gelucire 50/13 alone showed a broad melting endotherm using DSC, with two dominant peaks at 36 and 44 degrees C. While incorporation of caffeine did not result in marked changes to the profile, the presence of paracetamol increased the proportion of material in the lower melting peak. HSM studies indicated that the Gelucire crystallised into two main spherulitic conformations; paracetamol appeared to act as a nucleation site for the lower melting fractions while caffeine particles changed into a needle-shaped morphology on cooling the system from the liquid state. Dissolution studies at 37 degrees C showed the caffeine to be released at a relatively faster rate than the paracetamol. Kinetic modeling and direct measurement of the erosion profile indicated that the caffeine systems showed a greater preponderance for erosion than did the corresponding paracetamol systems. It is suggested that the paracetamol promotes the generation of the lower melting form of Gelucire 50/13 which in turn influences the release rate and mechanism. The study therefore indicates that the influence of the drug should be carefully considered when studying Gelucire matrix systems.

摘要

为了确定药物的选择是否会影响固体结构和释放机制,研究了加入咖啡因和对乙酰氨基酚对Gelucire 50/13结构和行为的影响。制备了含药量高达30%(w/w)的分散体,并使用差示扫描量热法(DSC)、热台微分干涉对比显微镜(HSM)、溶出度研究以及侵蚀、吸水率(WU)和直径变化测量等方法进行研究。单独的Gelucire 50/13使用DSC显示出一个宽的熔融吸热峰,在36和44摄氏度有两个主峰。虽然加入咖啡因并没有导致曲线有明显变化,但对乙酰氨基酚的存在增加了低熔点峰中物质的比例。HSM研究表明,Gelucire结晶成两种主要的球晶构象;对乙酰氨基酚似乎是低熔点部分的成核位点,而咖啡因颗粒在将体系从液态冷却时变成针状形态。37摄氏度的溶出度研究表明,咖啡因的释放速度比乙酰氨基酚相对更快。动力学建模和侵蚀曲线的直接测量表明,咖啡因体系比相应的对乙酰氨基酚体系表现出更大的侵蚀倾向。有人认为,对乙酰氨基酚促进了Gelucire 50/13低熔点形式的生成,这反过来又影响了释放速率和机制。因此,该研究表明,在研究Gelucire基质系统时应仔细考虑药物的影响。

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