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通过超临界辅助雾化生产的适用于气雾剂递送的特布他林微粒。

Terbutaline microparticles suitable for aerosol delivery produced by supercritical assisted atomization.

作者信息

Reverchon E, Della Porta G

机构信息

Dipartimento di Ingegneria Chimica ed Alimentare, Università di Salerno, Via Ponte don Melillo, 84084 (SA), Fisciano, Italy.

出版信息

Int J Pharm. 2003 Jun 4;258(1-2):1-9. doi: 10.1016/s0378-5173(03)00024-3.

Abstract

A new micronization technique called supercritical assisted atomization has been used to produce terbutaline microparticles with controlled particle size distribution in the range of drug particles deliverable by aerosol. The process is based on the solubilization of a fixed amount of supercritical carbon dioxide in a liquid solution; then, the ternary mixture is sprayed through a nozzle and atomized in order to produce microparticles. Water has been used as the liquid solvent; heated nitrogen has also been delivered into the precipitator to evaporate the liquid droplets. The process has been first optimized with respect to pressure and temperature (mixing temperature and pressure, precipitation temperature) and very mild operation conditions have been selected; then, the influence of the solute concentration in the liquid solution on particle size has been studied. The terbutaline produced powders were characterized with respect to morphologies and particle size. Spherical particles with very narrow volumetric particle size distributions were produced. Particularly, operating at 30 and 50mg of terbutaline per ml of water, more than 90% of the two distributions ranged between 1 and 3 microm; at 80 mg/ml more than 99% of the distribution ranged between 1 and 4 microm. HPLC analysis confirmed that no chemical degradation occurred in the drug as a consequence of the supercritical processing.

摘要

一种名为超临界辅助雾化的新型微粉化技术已被用于生产粒径分布可控的特布他林微粒,其粒径范围为可通过气雾剂递送的药物颗粒粒径范围。该过程基于将固定量的超临界二氧化碳溶解在液体溶液中;然后,将三元混合物通过喷嘴喷雾并雾化以产生微粒。水已被用作液体溶剂;加热的氮气也被输送到沉淀器中以蒸发液滴。该过程首先针对压力和温度(混合温度和压力、沉淀温度)进行了优化,并选择了非常温和的操作条件;然后,研究了液体溶液中溶质浓度对粒径的影响。对所生产的特布他林粉末的形态和粒径进行了表征。制备出了具有非常窄的体积粒径分布的球形颗粒。特别是,当每毫升水含有30毫克和50毫克特布他林时,两种分布中超过90%的粒径范围在1至3微米之间;当浓度为80毫克/毫升时,超过99%的粒径分布在1至4微米之间。高效液相色谱分析证实,超临界处理过程中药物未发生化学降解。

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