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首页> 外文期刊>International Journal of Pharmaceutics >Pulmonary administration of a dry powder formulation of the antifibrotic drug tilorone reduces silica-induced lung fibrosis in mice
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Pulmonary administration of a dry powder formulation of the antifibrotic drug tilorone reduces silica-induced lung fibrosis in mice

机译:抗纤维化药物潮汐剂的干粉制剂的肺施用可降低小鼠的二氧化硅诱导的肺纤维化

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摘要

The aim of this work was to study the antifibrotic effect of pulmonary administration of tilorone to lung fibrosis. L-leucine coated tilorone particles were prepared and their aerosolization properties were analyzed using two dry powder inhalers (Easyhaler and Twister). In addition, the biological activity and cell monolayer permeation was tested. The antifibrotic effect of tilorone delivered by oropharyngeal aspiration was studied in vivo using a silica-induced model of pulmonary fibrosis in mice in a preventive setting. When delivered from the Easyhaler in an inhalation simulator, the emitted dose and fine particle fraction were independent from the pressure applied and showed dose repeatability. However, with Twister the aerosolization was pressure-dependent indicating poor compatibility between the device and the formulation. The formulation showed more consistent permeation through a differentiated Calu-3 cell monolayer compared to pristine tilorone. Tilorone decreased the histological fibrosis score in vivo in systemic and local administration, but only systemic administration decreased the mRNA expression of type I collagen. The difference was hypothesized to result from 40-fold higher drug concentration in tissue samples in the systemic administration group. These results show that tilorone can be formulated as inhalable dry powder and has potential as an oral and inhalable antifibrotic drug.
机译:这项工作的目的是研究肺酮肺蠕虫对肺纤维化的抗纤维化效应。制备L-亮氨酸涂覆的椴树颗粒,并使用两个干粉吸入器(EasyHaler和Twister)分析它们的雾化性能。此外,测试了生物活性和细胞单层渗透。在预防凝固中,使用二氧化硅诱导的小鼠肺纤维化模型在体内进行了口咽吸入所递送的椴树抗纤维化效应。当在吸入模拟器中从EasyHaler送出时,发射剂量和细颗粒级分离施加的压力和显示剂量可重复性。然而,随着捻线器,雾化是压力依赖性,表明装置与制剂之间的相容性差。与原始潮罗尼相比,该制剂通过分化的Calu-3细胞单层渗透更一致。椴树在全身和局部给药中减少体内体内的组织学纤维化分数,但只有全身施用减少了I型胶原蛋白的mRNA表达。差异被假设为在系统给药组中的组织样品中的40倍较高的药物浓度产生。这些结果表明,椴树可以配制成可吸入的干粉,并具有作为口腔和可吸入的抗纤维化药物的潜力。

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