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Effects of particle morphology, pore size and surface coating of mesoporous silica on Naproxen dissolution rate enhancement

机译:介孔二氧化硅的颗粒形态,孔径和表面涂层对萘普生溶解速率提高的影响

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摘要

Naproxen (Nap) is a commonly used drug for antiphlogosis and analgesia, but its dissolution rate in water is quite low. In this work, the dissolution behavior of Nap after loading in mesoporous silica materials was investigated in a simulated intestinal fluid (pH = 6.8). The results indicated that the pore sizes, morphologies and surface chemical groups of the mesoporous silica were significant factors on the dissolution behavior of Nap. The physical state of encapsulated Nap was affected by the pore sizes of mesoporous silica, which influenced its dissolution rate. Amorphous Nap exhibited a higher dissolution rate than crystallized Nap, even though the larger pore size could facilitate its diffusion from the matrix. The effect of the morphology of mesoporous silicas on the dissolution of Nap can be ascribed to the length of pore channels, that the longer channel showed a longer diffusion pathway of Nap. Moreover, the release rate of Nap from functionalized mesoporous materials was effectively controlled compared with that of unmodified materials.
机译:萘普生(Nap)是用于抗发炎和镇痛的常用药物,但是其在水中的溶解率非常低。在这项工作中,在模拟肠液(pH = 6.8)中研究了Nap在中孔二氧化硅材料中加载后的溶解行为。结果表明,介孔二氧化硅的孔径,形貌和表面化学基团是影响Nap溶解行为的重要因素。包封的Nap的物理状态受中孔二氧化硅孔径的影响,从而影响其溶解速率。尽管较大的孔径可以促进其从基体中扩散出来,但非晶态的Nap的溶解速率要高于结晶的Nap。介孔二氧化硅的形态对Nap溶解的影响可以归因于孔道的长度,较长的通道显示出Nap的扩散路径较长。此外,与未改性的材料相比,功能化介孔材料中Nap的释放速率得到了有效控制。

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