Corrigan Deirdre O, Healy Anne Marie, Corrigan Owen I
School of Pharmacy and Pharmaceutical Sciences, University of Dublin, Trinity College, Dublin, Ireland.
Eur J Pharm Biopharm. 2006 Apr;62(3):295-305. doi: 10.1016/j.ejpb.2005.09.008. Epub 2005 Nov 28.
Chitosan microparticulates were prepared by spray drying from aqueous media containing hydrochloric acid or acetic acid. The medium affected the morphology and degree of acetylation of chitosan, the presence of acetic acid resulting in increased acetylation of the polymer during processing. Co-spray drying salbutamol sulphate/chitosan systems with the crosslinking agent formaldehyde had no detectable effect on particle morphology. However, with increasing salbutamol loading particles became less spherical, taking on a collapsed appearance. Spray dried chitosan-salbutamol sulphate microparticulates were X-ray amorphous. Chitosan-salbutamol sulphate composites were compressed into discs to quantify drug release and showed delayed release of salbutamol sulphate. The general power law equation fitted the data better than the t0.5, mono- or bi-exponential models and gave n indices greater than 0.5, i.e. in the range 0.53-0.71. Crosslinking did not dramatically alter the drug release behaviour. Both crosslinked and non-crosslinked composites swelled during release, the former to the greater extent. The release data for crosslinked composites gave slightly higher n values than the corresponding non-crosslinked composites, consistent with the increased swelling of these systems. Release studies were also conducted on the microparticulates. Because of the small particle size and large surface area present, the release of the highly soluble drug salt was extremely rapid (> 90% release in 5 min). Twin impinger analysis indicated good in vitro deposition of the microparticulates and potential for pulmonary delivery.
壳聚糖微粒是通过喷雾干燥法从含有盐酸或乙酸的水性介质中制备的。介质会影响壳聚糖的形态和乙酰化程度,乙酸的存在会导致聚合物在加工过程中乙酰化程度增加。将硫酸沙丁胺醇/壳聚糖体系与交联剂甲醛进行共喷雾干燥,对颗粒形态没有可检测到的影响。然而,随着沙丁胺醇负载量的增加,颗粒变得不那么呈球形,呈现出塌陷的外观。喷雾干燥的壳聚糖-硫酸沙丁胺醇微粒呈X射线无定形。将壳聚糖-硫酸沙丁胺醇复合材料压制成圆盘以量化药物释放,结果显示硫酸沙丁胺醇的释放延迟。通用幂律方程比t0.5、单指数或双指数模型更能拟合数据,且n指数大于0.5,即在0.53-0.71范围内。交联并没有显著改变药物释放行为。交联和未交联的复合材料在释放过程中都会膨胀,前者膨胀程度更大。交联复合材料的释放数据比相应的未交联复合材料的n值略高,这与这些体系中膨胀增加一致。还对微粒进行了释放研究。由于微粒尺寸小且表面积大,高溶性药物盐的释放极其迅速(5分钟内释放>90%)。双撞击器分析表明微粒在体外具有良好的沉积效果和肺部给药潜力。