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压实特性和界面形貌对双层片剂性能的影响。

Influence of compaction properties and interfacial topography on the performance of bilayer tablets.

机构信息

Bristol-Myers Squibb Co., Drug Product Science and Technology, 1 Squibb Drive, New Brunswick, NJ 08903, USA.

出版信息

Int J Pharm. 2012 Oct 15;436(1-2):171-8. doi: 10.1016/j.ijpharm.2012.05.026. Epub 2012 Jun 21.

Abstract

Bilayer tablets are generating great interest recently as they can achieve controlled delivery of different drugs with pre-defined release profiles. However, the production of such tablets has been facing great challenges as the layered tablets are prone to delaminate or fracture in the individual layers due to insufficient bonding strength of layers and adhesion at the interfaces. This paper will provide an insight into the role of interfacial topography on the performance of the bilayer tablets. In this study, two widely used pharmaceutical excipients: microcrystalline cellulose and lactose were investigated. Bilayer tablets were manufactured with a range of first and second layer compression forces. A crack of known dimensions was introduced at the interface to investigate the crack propagation mechanisms upon axially loading the bilayer tablet, and to determine the stress intensity factor (K(I)) of the interface (will be discussed in a separate paper). The results indicated that a strong dependency of the strength of bilayer tablets and mode of crack propagation on the material and compaction properties. The results showed that the strength of bilayer tablets increased with the increase of interfacial roughness, and the first layer and second layer forces determined the magnitude of interfacial roughness for both plastic and brittle materials. Further, the results also indicated that layer sequence and compaction forces played a key role in influencing the strength of the bilayer tablets. For the same (first and second layer) force combination, interfacial strength is higher for the tablets made of brittle material in the first layer. It was observed that interfacial strength decreased with the increase of lubricant concentration. The studies showed that the effect of lubricant (i.e. reduction in compact strength with the increase of lubricant concentration) on the strength of compacts is higher for tablets made of plastic material as compared to the tablets made of brittle material.

摘要

双层片剂最近引起了极大的兴趣,因为它们可以实现不同药物的控制释放,具有预定的释放曲线。然而,由于层间的结合强度不足和界面的附着力,这种片剂的生产一直面临着巨大的挑战,分层片剂容易分层或在各个层中破裂。本文将探讨界面形貌对双层片剂性能的影响。在这项研究中,使用了两种广泛使用的药物赋形剂:微晶纤维素和乳糖。制造了一系列具有不同第一层和第二层压缩力的双层片剂。在界面处引入已知尺寸的裂纹,以研究双层片剂轴向加载时裂纹的扩展机制,并确定界面的应力强度因子(K(I))(将在另一篇论文中讨论)。结果表明,双层片剂的强度和裂纹扩展模式强烈依赖于材料和压实性能。结果表明,双层片剂的强度随界面粗糙度的增加而增加,而第一层和第二层的力决定了塑性和脆性材料的界面粗糙度的大小。此外,结果还表明,层序和压实力在影响双层片剂强度方面起着关键作用。对于相同的(第一层和第二层)力组合,脆性材料制成的片剂的界面强度更高。观察到界面强度随润滑剂浓度的增加而降低。研究表明,对于由塑性材料制成的片剂,润滑剂(即随着润滑剂浓度的增加而降低压实强度)对片剂强度的影响高于由脆性材料制成的片剂。

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