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Treating mannitol in a saturated solution of mannitol: a novel approach to modify mannitol crystals for improved drug delivery to the lungs.

机译:在甘露醇饱和溶液中处理甘露醇:修饰甘露醇晶体以改善药物向肺部递送的新方法。

摘要

The aim of this study was to evaluate the influence of treatment of a promising dry powder aerosol carrier (mannitol) on the aerosolization performance of salbutamol sulphate (SS) using a novel approach: treating excess commercial carrier particles in a saturated solution of the same carrier. Commercial mannitol (CM) particles were treated with aqueous mannitol supersaturated solutions (20% and 25% w/v), under stirring, (300 rpm) for either 24h or 48 h. The results showed that particle treatment did not alter the polymorphic form of mannitol (β-mannitol); however, all treated mannitol particles demonstrated smoother surface topography and improved aerosolization performance compared to CM in dry powder inhalations. Unlike the concentration of mannitol solution used during treatment, the time of treatment to collect mannitol crystals was an essential key to modify the physical properties of mannitol and its effect on the aerosolization performance. In comparison to mannitol particles treated for 48 h, mannitol particles treated for 24h demonstrated larger size, more elongated-less regular shape, and smoother surfaces. No apparent relationship was obtained between in vitro aerosolisation behavior of SS with either mannitol particle size or shape descriptors. However, despite their larger size and more irregular-less uniformed shape, treated mannitol particles with smoother surfaces generated drug particles with smaller aerodynamic size and are expected to deliver higher amounts of drug to lower airways. The results demonstrated the potential of treating mannitol particles in aqueous solutions of the same material under controlled conditions to produce mannitol particles promising for dry powder inhaler systems. The results suggested that mannitol particle surface texture properties dominate over both particle size and particle shape of mannitol in terms of determining the aerosolization performance of mannitol.
机译:这项研究的目的是使用一种新方法评估有前景的干粉气溶胶载体(甘露醇)对沙丁胺醇硫酸盐(SS)的气雾化性能的影响:在相同载体的饱和溶液中处理过量的商业载体颗粒。在搅拌下(300 rpm),用甘露醇过饱和水溶液(20%和25%w / v)处理市售甘露醇(CM)颗粒24小时或48小时。结果表明,颗粒处理不会改变甘露醇的多晶型形式(β-甘露醇);然而,在干粉吸入中,与CM相比,所有处理过的甘露醇颗粒均表现出更平滑的表面形貌和改善的雾化性能。与处理过程中所用甘露醇溶液的浓度不同,收集甘露醇晶体的处理时间是改变甘露醇的物理性质及其对雾化性能的影响的关键。与处理48小时的甘露醇颗粒相比,处理24小时的甘露醇颗粒具有更大的尺寸,更细长的规则形状和更光滑的表面。 SS的体外雾化行为与甘露醇粒径或形状描述符之间没有明显的关系。然而,尽管它们具有更大的尺寸和更不规则的均匀形状,但具有更光滑表面的经处理的甘露醇颗粒产生的空气动力学尺寸较小的药物颗粒被期望将更多量的药物递送至较低的气道。结果证明了在受控条件下在相同材料的水溶液中处理甘露醇颗粒的潜力,从而生产出有望用于干粉吸入器系统的甘露醇颗粒。结果表明,在确定甘露醇的雾化性能方面,甘露醇的颗粒表面织构特性在甘露醇的粒径和颗粒形状上均占主导地位。

著录项

  • 作者

    Kaialy Waseem; Nokhodchi Ali;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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