首页> 外文期刊>International Journal of Pharmaceutics >Experimental study of the GAS process for producing microparticles of beclomethasone-17,21-dipropionate suitable for pulmonary delivery.
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Experimental study of the GAS process for producing microparticles of beclomethasone-17,21-dipropionate suitable for pulmonary delivery.

机译:GAS工艺生产适用于肺部输送的倍氯米松17,21-二丙酸酯微粒的实验研究。

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摘要

In this study the micronization of beclomethasone-17,21-dipropionate (BECD), used as an inhaled steroid for the treatment of asthma, was studied using the gas-antisolvent (GAS) process as a "green" alternative to pharmaceutical recrystallization. A systematic investigation of the influence of the key GAS process parameters: antisolvent addition rate (1, 50, 75 and 100ml/min), temperature (25, 32.5, 40 and 52.5 degrees C), solute concentration (5, 25, 70 and 100%), and agitation rate (500, 1000, 2000 and 3000rpm) were investigated on particle morphology, size distribution, and crystallinity. It was found using scanning electron microscopy (SEM) and laser diffraction, that increasing the antisolvent addition rate and the agitation rate, while decreasing the temperature and solute concentration, led to a decrease in the steroids mean particle diameter. These parameters could be tuned to give a mean particle diameter of 1.8mum, and an average mass median aerodynamic diameter (MMAD) of 7.9mum. High-performance liquid chromatography (HPLC) results showed the recrystallized BECD was purer than the non-processed material. The role of the solvent (acetone, methanol and ethanol) in the BECD crystal structure was investigated using X-ray diffraction (XRD), which showed acetone gave a more crystalline structure, hence having lower incorporation into the crystal structure. These results showed that the GAS process has the potential to produce steroid with powder properties suitable for inhalation therapy.
机译:在这项研究中,使用气态抗溶剂(GAS)方法作为药物重结晶的“绿色”替代方法,研究了用作吸入类固醇治疗哮喘的吸入性类固醇倍氯米松17,21-二丙酸酯(BECD)的微粉化。对关键GAS工艺参数的影响进行系统研究:抗溶剂添加速率(1、50、75和100ml / min),温度(25、32.5、40和52.5摄氏度),溶质浓度(5、25、70和研究了颗粒的形貌,尺寸分布和结晶度(100%)和搅拌速率(500、1000、2000和3000rpm)。使用扫描电子显微镜(SEM)和激光衍射发现,增加抗溶剂的添加速率和搅拌速率,同时降低温度和溶质浓度,导致类固醇平均粒径减小。可以对这些参数进行调整,以使平均粒径为1.8μm,平均质量空气动力学平均直径(MMAD)为7.9μm。高效液相色谱(HPLC)结果表明,重结晶的BECD比未处理的材料纯。使用X射线衍射(XRD)研究了溶剂(丙酮,甲醇和乙醇)在BECD晶体结构中的作用,结果表明丙酮具有更多的晶体结构,因此掺入晶体结构的可能性较低。这些结果表明,GAS工艺具有生产具有适合吸入疗法的粉末特性的类固醇的潜力。

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