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首页> 外文期刊>Journal of pharmaceutical sciences. >Templated open flocs of anisotropic particles for pulmonary delivery with pressurized metered dose inhalers.
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Templated open flocs of anisotropic particles for pulmonary delivery with pressurized metered dose inhalers.

机译:模板化的各向异性颗粒开放絮状物,可通过加压计量吸入器进行肺部输送。

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摘要

The challenges in forming stable drug suspensions in hydrofluoroalkane (HFA) propellants have limited drug dosages and efficiency of drug delivery with pressurized metered dose inhalers (pMDI). Herein, stable suspensions of weakly flocculated particles, in the shape of thin plates or needles, of a poorly water-soluble drug, itraconazole (Itz), are efficiently delivered by pMDI at high doses, up to 2.4 mg/actuation. These anisotropic particles pack inefficiently and form low-density flocs that stack upon each other to prevent settling. In contrast, spherical particles formed dense aggregates that settled within minutes. Upon actuation of the pMDI, atomized propellant droplets shear apart and thus template the highly friable flocs. Evaporation of the HFA compacts the flocs to yield porous particles with optimal aerodynamic properties. High fine particle fractions (49-64%) were achieved with the stable suspensions for drug loadings up to 50 mg/mL. Furthermore, the micron-sized particles, ideal for pulmonary delivery, are composed of nanoparticles that dissociate and facilitate rapid dissolution of poorly water-soluble drugs. Pulmonary delivery of stable suspensions of templated, open flocs is broadly applicable to a range of anisotropic particle morphologies for poorly water-soluble drugs and proteins for efficient delivery of high doses, up to several milligrams, using minimal amounts of excipients.
机译:在氢氟烷烃(HFA)推进剂中形成稳定的药物悬浮液所面临的挑战在于,有限的药物剂量和加压计量吸入器(pMDI)的药物输送效率有限。在此,pMDI可以高剂量有效地将水溶性差的药物伊曲康唑(Itz)的薄絮状颗粒的稳定悬浮液(薄板或针状)稳定悬浮,剂量最高可达2.4 mg /次。这些各向异性的颗粒无法有效堆积,形成低密度的絮凝物,它们相互堆叠以防止沉降。相反,球形颗粒形成密集的聚集体,这些聚集体在数分钟内沉淀下来。在激活pMDI时,雾化的推进剂液滴会切开并因此形成高度易碎的絮凝物。 HFA的蒸发会压实絮凝物,从而产生具有最佳空气动力学特性的多孔颗粒。稳定的悬浮液可实现高达50 mg / mL的高载药量(49-64%)。此外,非常适合肺部输送的微米级颗粒由纳米颗粒组成,该纳米颗粒可解离并促进水溶性差的药物的快速溶解。模板化的开放絮状物的稳定悬浮液的肺部递送广泛适用于水溶性差的药物和蛋白质的一系列各向异性颗粒形态,可使用最少的赋形剂有效地递送高达数毫克的高剂量。

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