首页> 外文期刊>Journal of pharmaceutical sciences. >The effect of the physical states of binders on high-shear wet granulation and granule properties: a mechanistic approach toward understanding high-shear wet granulation process. Part II. Granulation and granule properties.
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The effect of the physical states of binders on high-shear wet granulation and granule properties: a mechanistic approach toward understanding high-shear wet granulation process. Part II. Granulation and granule properties.

机译:粘合剂的物理状态对高剪切湿法制粒和颗粒性质的影响:了解高剪切湿法制粒过程的机械方法。第二部分制粒和颗粒性质。

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The objective is to provide mechanistic understanding of a preferred wet granulation process that a binder is added in a dry state. Blends of CaCO(3) and binders were prepared and used as model systems, and they were exposed to either 96% RH (rubbery/solution state) or 60% RH (glassy state) at room temperature to control the physical state of the binders, followed by high-shear granulation and particle size measurement. The blends of PVP K12, PVP K29/32, and HPC showed a significant increase in particle size after exposure to 96% RH. An increase of aspect ratio was also observed for the blend of HPC. In contrast, the blends being exposed to 60% RH did not exhibit any increase in particle size or aspect ratio. Regarding the effect of binder molecular weight on the mechanical strength of granules, granules of PVP K29/32 had higher strength than granules of PVP K12. This can be explained using polymer entanglement theory, in which the degree of polymerization (DP) of (N approximately 440-540) of PVP K29/32 is above the critical value (N(c) approximately 300-600) for entanglement; while DP of PVP K12 (N approximately 20-30) is below it. Finally, a water sorption-phase transition-diffusion induced granule growth model for granulation has been suggested.
机译:目的是提供对优选的湿法制粒方法的机械理解,该方法是在干态下加入粘合剂。制备了CaCO(3)和粘合剂的共混物并将其用作模型系统,并将它们在室温下暴露于96%RH(橡胶/溶液状态)或60%RH(玻璃态)下,以控制粘合剂的物理状态,然后进行高剪切造粒和粒度测量。 PVP K12,PVP K29 / 32和HPC的混合物在暴露于96%RH后显示出粒径的显着增加。 HPC混合物的纵横比也有所增加。相比之下,暴露于60%RH的共混物的粒径或长宽比没有任何增加。关于粘合剂分子量对颗粒的机械强度的影响,PVP K29 / 32的颗粒具有比PVP K12的颗粒更高的强度。这可以使用聚合物缠结理论来解释,其中PVP K29 / 32的(N约为440-540)的聚合度(DP)高于缠结的临界值(N(c)约为300-600)。而PVP K12的DP(N大约20-30)在其之下。最后,提出了一种水吸收相变扩散诱导的颗粒生长造粒模型。

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