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首页> 外文期刊>Molecular pharmaceutics >Dissolution enhancement of itraconazole by hot-melt extrusion alone and the combination of hot-melt extrusion and rapid freezing-effect of formulation and processing variables
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Dissolution enhancement of itraconazole by hot-melt extrusion alone and the combination of hot-melt extrusion and rapid freezing-effect of formulation and processing variables

机译:单独的热熔挤出溶解增强伊唑康唑的溶解和热熔挤出和制剂的快速冻结效应的组合及加工变量的组合

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摘要

We investigated the effects of the hot-melt extrusion (HME) process on the properties of itraconazole (ITZ) amorphous solid dispersions made by thin film freezing (TFF) technology. The ITZ-HPMCAS L (1:2) TFF composition exhibited limited drug release in acidic media. HME of the ITZ-HPMCAS TFF composition with hydrophilic carriers improved the drug release rate in acidic media. The type and level of hydrophilic carrier in the composition affected the dissolution profiles of the extrudates. A design of experiments (DoE) study was conducted to elucidate those effects. Hot-melt extrusion processing variables such as extrusion temperature and screw configuration also played a critical role on the properties of the extruded compositions. A higher degree of mixing reduced the crystallinity of semicrystalline excipients and favored the drug release in the acidic media; moreover, the drug precipitation rate in the neutral pH media was reduced.
机译:我们调查了热熔挤出(HME)方法对薄膜冷冻(TFF)技术制备的伊唑啉(ITZ)无定形固体分散体的性质的影响。 ITZ-HPMCAs L(1:2)TFF组合物在酸性介质中表现出有限的药物释放。 具有亲水载体的ITZ-HPMCAS TFF组合物的HME改善了酸性介质中的药物释放速率。 组合物中亲水载体的类型和水平影响了挤出物的溶解谱。 进行了实验(DOE)研究以阐明这些效果。 挤出温度和螺杆配置等热熔挤出处理变量也在挤出组合物的性质上发挥了关键作用。 更高的混合程度降低了半结晶赋形剂的结晶度,并赞成酸性介质中的药物释放; 此外,中性pH培养基中的药物沉淀率降低。

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