首页> 外文期刊>Journal of pharmaceutical sciences. >Production of pH-responsive microparticles by spray drying: investigation of experimental parameter effects on morphological and release properties.
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Production of pH-responsive microparticles by spray drying: investigation of experimental parameter effects on morphological and release properties.

机译:通过喷雾干燥生产pH响应性微粒:研究实验参数对形态和释放特性的影响。

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摘要

During spray drying, emphasis is placed on process optimisation to generate favourable particle morphological and flow properties. The effect of the initial feed solution composition on the drug release from the prepared microparticles (MPs) is rarely considered. We investigated the effects of solvent composition, feed solution concentration and drug-loading on sodium salicylate, hydrocortisone and triamcinolone release from spray-dried Eudragit L100 MPs. Eudragit L100 is a pH-responsive polymer whose dissolution threshold is pH 6 so dissolution testing of the prepared MPs at pH 5 and 1.2 illustrated non-polymer controlled burst release. Increasing the water content of the initial ethanolic feed solution significantly reduced hydrocortisone burst release at pH 5, as did reducing the feed solution concentration. These findings caution that changes in feed solution concentration or solvent composition not only affect particles' morphological characteristics but can also negatively alter their drug release properties. This work also illustrate that drug-free MPs can have different morphological properties to drug-loaded MPs. Therefore, process optimisation needs to be carried out using drug-loaded systems. Depending on the physicochemical properties of the encapsulated active pharmaceutical ingredient (API), drug-loading can affect the polymer solubility in the initial feed solution with consequent impact on MPs morphological and release properties.
机译:在喷雾干燥过程中,重点放在工艺优化上以产生有利的颗粒形态和流动性能。很少考虑初始进料溶液组成对药物从制备的微粒(MPs)释放的影响。我们研究了溶剂组成,进料溶液浓度和载药量对喷雾干燥的Eudragit L100 MP释放的水杨酸钠,氢化可的松和曲安西龙的影响。 Eudragit L100是一种pH响应型聚合物,其溶出度阈值为pH 6,因此在pH 5和1.2下对制备的MP进行溶出度测试表明非聚合物控制了突发释放。增加初始乙醇进料溶液的水含量可显着减少pH值为5时氢化可的松的释放,降低进料溶液的浓度也是如此。这些发现警告说,进料溶液浓度或溶剂组成的变化不仅会影响颗粒的形态特征,还会负面影响其药物释放性能。这项工作还说明了无药物的MP与载药的MP具有不同的形态学特性。因此,需要使用载药系统进行工艺优化。根据封装的活性药物成分(API)的物理化学性质,载药量可能会影响聚合物在初始进料溶液中的溶解度,从而影响MP的形态和释放特性。

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