流式细胞法测定格列本脲片的溶出度

M. Iwata, Yuri Takahashi, H. Takeuchi, E. Kawahara, K. Takayama, Shoichi Shirotake
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引用次数: 0

摘要

采用流式细胞法(JP XIII中溶出度试验的第三种方法)考察了影响格列本脲溶出度的操作条件,观察到格列本脲在辛醇与磷酸盐缓冲液(pH 7.4)之间的分配系数为24.2,表明格列本脲具有亲脂性。在流式细胞法中,仪器上的流量指示器不能反映溶解介质的实际流速。当示踪剂流速较慢(8 ml/min)时,溶出时间曲线(ADT)值随微球直径减小而增大。另一方面,当流速较快(24 ml/min)时,ADT值几乎不受珠粒直径的影响,但在此条件下,ADT值偏差较大。基于响应面法对流量和水珠直径的工况进行了优化。结果表明,流速为14 ml/min,药珠直径为0.5 mm是获得最大ADT和最小ADT偏差的最佳条件。采用流式细胞法时,应根据被试药物的性质对操作条件进行优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dissolution Profiles of Glibenclamide Tablet Using Flow-Through-Cell Method
Operating conditions affecting the dissolution characteristics of glibenclamide were investigated with the flow-through-cell method (the third method of dissolution test in JP XIII). The partition coefficient of glibenclamide between octanol and phosphate buffer (pH 7.4) was observed to be 24.2, thus suggesting the lipophilic nature of glibenclamide. The flow indicator on the apparatus in the flow-through-cell method did not reflect the real flow rate of the dissolution media.The dissolution-time curve (ADT) value increased in line with the decrease in the bead's diameter when the flow rate of the indicator was slow (8 ml/min). On the other hand, the ADT value was hardly affected by the bead's diameter when the flow rate was fast (24 ml/min), however, a wide deviation in the ADT values was seen during such conditions. The operating condition of flow rate and bead's diameter was optimized based on the response surface method. As a result, a flow rate of 14 ml/min and a bead diameter of 0.5 mm were estimated as the optimal conditions to obtain the largest ADT and the smallest deviation in the ADT. When using the fl ow-through-cell method, the operating condition should be optimized based on the nature of pharmaceuticals under test.
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