...
首页> 外文期刊>Scientific reports. >Nanoporous mannitol carrier prepared by non-organic solvent spray drying technique to enhance the aerosolization performance for dry powder inhalation
【24h】

Nanoporous mannitol carrier prepared by non-organic solvent spray drying technique to enhance the aerosolization performance for dry powder inhalation

机译:纳米多孔甘露醇载体通过非有机溶剂喷雾干燥技术制备,以提高干粉吸入的气溶胶化性能

获取原文
           

摘要

An optimum carrier rugosity is essential to achieve a satisfying drug deposition efficiency for the carrier based dry powder inhalation (DPI). Therefore, a non-organic spray drying technique was firstly used to prepare nanoporous mannitol with small asperities to enhance the DPI aerosolization performance. Ammonium carbonate was used as a pore-forming agent since it decomposed with volatile during preparation. It was found that only the porous structure, and hence the specific surface area and carrier density were changed at different ammonium carbonate concentration. Furthermore, the carrier density was used as an indication of porosity to correlate with drug aerosolization. A good correlation between the carrier density and fine particle fraction (FPF) (r2?=?0.9579) was established, suggesting that the deposition efficiency increased with the decreased carrier density. Nanoporous mannitol with a mean pore size of about 6?nm exhibited 0.24-fold carrier density while 2.16-fold FPF value of the non-porous mannitol. The enhanced deposition efficiency was further confirmed from the pharmacokinetic studies since the nanoporous mannitol exhibited a significantly higher AUC0-8h value than the non-porous mannitol and commercial product Pulmicort. Therefore, surface modification by preparing nanoporous carrier through non-organic spray drying showed to be a facile approach to enhance the DPI aerosolization performance.
机译:最佳载体益硬度对于实现载体的干粉吸入(DPI)的满足药物沉积效率是必不可少的。因此,首先使用非有机喷雾干燥技术来制备具有小粗糙度的纳米多孔甘露醇,以提高DPI雾化性能。碳酸铵用作孔形成剂,因为它在制备期间用挥发性分解。发现只有多孔结构,并且因此在不同的碳酸铵浓度下改变了比表面积和载体密度。此外,载流子密度用作与药物雾化相关的孔隙率的指示。建立了载流子密度和细颗粒级分(FPF)(R2≤= 0.9579)之间的良好相关性,表明沉积效率随着载体密度降低而增加。纳米多孔甘露醇具有约6Ω·Nm的平均孔径,表现出0.24倍的载体密度,而无孔甘露醇的2.16倍的FPF值。从药代动力学研究进一步证实了增强的沉积效率,因为纳米多孔甘露醇表现出比无多孔甘露醇和商业产品Pulmicort显着更高的AUC0-8H值。因此,通过非有机喷雾干燥制备纳米多孔载体的表面改性显示是增强DPI气溶胶性能的容易方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号