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首页> 外文期刊>Journal of Drug Delivery and Therapeutics >Evaluating the effect of the porous and non-porous colloidal silicon dioxide as a stabilizer on amorphous solid dispersion
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Evaluating the effect of the porous and non-porous colloidal silicon dioxide as a stabilizer on amorphous solid dispersion

机译:在无定形固体分散体上评价多孔和无孔胶体二氧化硅作为稳定剂的影响

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摘要

Advancement in the discovery of drugs has led to many highly lipophilic compounds with very low water solubility. Amorphous solid dispersion is one of the emerging technologies to increase the solubility of these drugs. The stability of these systems is critical since the high energy system tends to recrystallize, which negates the benefits of these systems. In this paper, we are evaluating the use of colloidal silicon dioxide as a potential stabilizer to stabilize the amorphous solid dispersions. Two types of colloidal silicon dioxide are used: porous colloidal silicon dioxide -Syloid 244 Fp and nonporous fumed silica – Aerosil 200. These silicon dioxides have a high surface area. Two methods of incorporation are used to incorporate silicon dioxide into the solid dispersion. The spray drying method is used to make amorphous solid dispersion. It was found that porous silicon dioxide is better to increase stability as well as increasing dissolution rate and % release of the drug. The addition of silicon dioxide internally to the dispersion increases the dissolution rate, and the addition of silicon dioxide externally increases the stability of the solid dispersion.
机译:发现药物的进步导致了许多具有极低水溶性的高脂脂性化合物。无定形的固体分散是增加这些药物溶解度的新兴技术之一。由于高能量系统倾向于重结晶,因此这些系统的稳定性至关重要,这否定了这些系统的益处。在本文中,我们正在评估胶体二氧化硅作为潜在稳定剂的用途,以稳定无定形固体分散体。使用两种类型的胶体二氧化硅:多孔胶体二氧化硅 - 混合物244FP和无孔烟雾二氧化硅 - Aerosil 200.这些二氧化硅具有高表面积。使用两种掺入方法将二氧化硅掺入固体分散体中。喷雾干燥方法用于制备无定形固体分散体。发现多孔二氧化硅更好地提高稳定性以及增加药物释放的溶解速率和%。在内部向分散体中加入二氧化硅增加溶解速率,并在外部增加二氧化硅增加固体分散体的稳定性。

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