聚合物质量比和聚合物溶液pH对壳聚糖-羧甲基纤维素含茶碱微球性能的影响

Bollettino chimico farmaceutico Pub Date : 2003-10-01
M A Bayomi
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引用次数: 0

摘要

优化壳聚糖-羧甲基纤维素(CH-CMC)微球的配方是本研究的重点。选择茶碱(TPH)作为模型药物。以壳聚糖:羧甲基纤维素钠(CH:SCMC)质量比(X1)和聚合物溶液pH (X2)为自变量,研究了壳聚糖:羧甲基纤维素钠(CH:SCMC)质量比(X1)和聚合物溶液pH (X2)对乳液凝聚相分离法制备微球的物理特性和TPH释放曲线的影响。考察了休歇角、压缩系数、掺入效率、粒径、初始释药量、50%释药时间(T50%)和8 h释药率等因素对药物反应的影响。总的来说,CH:SCMC重量比的增加会提高药物的掺入效率,增大微球的粒径,降低微球的流动性。CH:SCMC比值的升高也是导致药物初始释放低、释放慢(T50%长)、8 h总释放不完全的原因。另一方面,聚合物溶液的高、低ph值会减少药物在微球中的掺入并产生小颗粒,而在ph2.5和ph4时获得良好的流动性。采用全因子实验设计来研究这两个自变量对反应的影响。用一般的二次方程对结果进行了分析,并生成了响应曲面。由得到的回归可知,CH:SCMC聚合物配比对8 h流动性、粒径和药物释放量的影响更为显著,pH值对初始药物释放量和T50%的影响更为显著。另一方面,两个变量的相互作用系数在8 h内对流动性和药物释放有协同作用,而在粒径和T50%上有拮抗作用。从优化研究中可以选择制备具有所需特性的微球所需的条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of polymers weight ratio and pH of polymers solution on the characteristics of chitosan-carboxymethyl cellulose microspheres containing theophylline.

Optimization of formulation for chitosan-carboxymethyl cellulose (CH-CMC) microspheres that contain a drug of narrrow therapeutic index was the interest of this study. Theophylline (TPH) was chosen as a model drug. The effects of chitosan:sodium carboxymethyl cellulose (CH:SCMC) weight ratio (X1) and pH of polymers solution (X2) as independent variables on the physical characteristics of the microspheres as well as release profile of TPH from microspheres prepared by the emulsion coacervation-phase separation technique were studied. The influence of each of the two variables on responses such as angle of repose, compressibility index, incorporation efficiency particle size, initial drug release, time for 50% drug release (T50%) and % drug released in 8 hours was investigated. Generally, the increase in CH:SCMC weight ratio showed to increase the incorporation efficiency of the drug, increase the particle size and decrease the flowability of the microspheres. The increase of CH:SCMC ratio was also responsible to get low initial drug release, slow drug release (long T50%) and incomplete total drug released in 8 hours. On the other hand, high and low pHs of polymers solution were responsible to decrease drug incorporation in the microspheres and to produce small particles while, good flowability was obtained at pHs 2.5 and 4. A full factorial experimental design was employed to investigate the effect of the two independent variables on the responses. The results were analyzed by a general quadratic equation and response surfaces generated. From the obtained regression, it was concluded that the effect of CH:SCMC polymers ratio is more significant in changing the values of flowability particle size and drug release in 8 hours while pH values were more significant in changing the values of initial drug release and T50%. On the other hand the interaction coefficients of the two variables showed synergistic effect on flowability and drug release in 8 hours while, there were antagonist effects on particle sizes and T50%. From the optimization studies it is possible to choose the conditions required for the preparation of microspheres with the desired characteristics.

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