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黏合剂物理状态对高剪切湿法制粒及颗粒性质的影响:高剪切湿法制粒过程的机理研究,第 3 部分:黏合剂流变性的影响。

Effect of physical states of binders on high-shear wet granulation and granule properties: a mechanistic approach toward understanding high-shear wet granulation process, part 3: effect of binder rheological properties.

机构信息

Drug Product Science and Technology, Bristol-Myers Squibb Company, New Brunswick, New Jersey 08903-0191, USA.

出版信息

J Pharm Sci. 2012 May;101(5):1877-87. doi: 10.1002/jps.23059. Epub 2012 Jan 23.

Abstract

Ternary blends consisting of efavirenz (a model drug compound), lactose monohydrate, and a polymeric binder were investigated to verify the "physical state theory" in which granulation occurs only when binders undergo transition from glassy state to rubbery solution state. Furthermore, it was found that the rheological properties of the binders can significantly affect the granulation process. The blends with binders of viscous flow [polyvinylpyrrolidone (PVP) K17, PVP K25, and PVP K29/32 after exposure to 96% RH] showed an increase in particle size with both binder concentration and mixing time. On the contrary, binders with viscoelastic properties, such as hydroxypropylcellulose (HPC) EXF and PVP K90, did not flow well and thereby, the blends with HPC and PVP K90 did not show much effect of binder concentration and mixing time on their granule size. Moreover, the friability of granules made with HPC EXF and PVP K90 is low, indicating that the strength of the granules largely depends on the viscosity of the binders, as the binders of higher viscosity tend to produce stronger granules. Finally, the viscoelastic state of the polymeric binders upon absorbing water was analyzed using the glass-rubber transition model, which shows five regions with different viscoelastic properties.

摘要

三元混合物由依非韦伦(一种模型药物化合物)、乳糖一水合物和一种聚合粘合剂组成,研究了这些混合物以验证“物理状态理论”,即只有当粘合剂从玻璃态转变为橡胶态溶液时才会发生造粒。此外,还发现粘合剂的流变性能会显著影响造粒过程。暴露于 96%相对湿度后具有粘性流动[聚乙烯吡咯烷酮(PVP)K17、PVP K25 和 PVP K29/32]的粘合剂的混合物,其粒径随粘合剂浓度和混合时间的增加而增加。相反,具有粘弹性的粘合剂,如羟丙基纤维素(HPC)EXF 和 PVP K90,流动性不佳,因此 HPC 和 PVP K90 的混合物的粒径受粘合剂浓度和混合时间的影响不大。此外,用 HPC EXF 和 PVP K90 制成的颗粒的脆性较低,这表明颗粒的强度在很大程度上取决于粘合剂的粘度,因为高粘度的粘合剂往往会产生更强的颗粒。最后,使用玻璃-橡胶转变模型分析了吸收水后的聚合物粘合剂的粘弹性状态,该模型显示了具有不同粘弹性的五个区域。

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