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Novel use of insoluble particles as disintegration enhancers for orally disintegrating films

机译:新颖的不溶性颗粒作为口服崩解膜的崩解增强剂

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The most important issue in the design of orally disintegrating films (ODFs) is the control of the ODFs' disintegration properties. A better understanding of the mechanisms of ingredients used to promote or disturb the disintegration time of ODFs would improve the development of ODF formulations. Here we focused on the advantage of adding insoluble particles (IPs) to improve the disintegration times of ODFs. We also verified the undesirable impact of the use of IPs on the mechanical properties of ODFs. We used hydroxyproplyl methylcellulose (HPMC), which is one of the most commonly used film-forming polymers for ODFs, as a film former. Films were prepared using the solution/solvent casting method. Microcrystalline cellulose, low-substituted hydroxypropyl cellulose, and silica with different particle sizes and shapes were added in the film formulations as IPs. As expected, the addition of IPs shortened the disintegration times of the films. The larger particles had a greater impact compared to the smaller particles. However, the addition of larger particles decreased the films' tensile strength. Our results demonstrate the effectiveness of IPs for shortening the disintegration times of HPMC films loaded with active pharmaceutical ingredients.
机译:口腔崩解膜(ODF)设计中最重要的问题是对ODF的崩解性质的控制。更好地理解用于促进或扰乱ODF的崩解时间的成分的机制将改善ODF配方的发展。在这里,我们专注于添加不溶性颗粒(IP)来改善ODF的崩解时间。我们还验证了IPS对ODF的机械性能的不良影响。我们使用羟丙基甲基纤维素(HPMC),这是用于ODF的最常用的成膜聚合物之一,作为薄膜前剂。使用溶液/溶剂浇铸方法制备薄膜。在薄膜制剂中加入微晶纤维素,低取代的羟丙基纤维素和具有不同颗粒尺寸和形状的二氧化硅作为IPS。正如预期的那样,添加IPS缩短了薄膜的崩解时间。与较小的颗粒相比,较大的颗粒具有更大的影响。然而,添加较大的颗粒降低了薄膜的拉伸强度。我们的结果证明了IPS缩短了缩短有活性药物成分的HPMC薄膜的崩解时间的有效性。

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