首页> 美国卫生研究院文献>AAPS PharmSciTech >Evaluation of the Physicochemical Properties and Compaction Behavior of Melt Granules Produced in Microwave-Induced and Conventional Melt Granulation in a Single Pot High Shear Processor
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Evaluation of the Physicochemical Properties and Compaction Behavior of Melt Granules Produced in Microwave-Induced and Conventional Melt Granulation in a Single Pot High Shear Processor

机译:单锅高剪切加工机中微波诱导和常规熔体造粒过程中产生的熔体颗粒的理化性质和压实行为的评估

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摘要

Recently, microwave-induced melt granulation was shown to be a promising alternative to conventional melt granulation with improved process monitoring capabilities. This study aimed to compare the physicochemical and compaction properties of granules produced from microwave-induced and conventional melt granulation. Powder admixtures comprising equivalent proportions by weight of lactose 200 M and anhydrous dicalcium phosphate were granulated with polyethylene glycol 3350 under the influence of microwave-induced and conventional heating in a 10-L single pot high shear processor. The properties of the granules and compacts produced from the two processes were compared. Relative to conventional melt granulation, the rates at which the irradiated powders heated up in microwave-induced melt granulation were lower. Agglomerate growth proceeded at a slower rate, and this necessitated longer massing durations for growth induction. These factors prompted greater evaporative moisture losses from the melt granules. Additionally, nonuniform heating of the powders under the influence of microwaves led to increased inter-batch variations in the binder contents of resultant melt granules and a reliance of content homogeneity on massing duration. Agglomerate growth proceeded more rapidly under the influence of conventional heating due to the enhanced heating capabilities of the powders. Melt granules produced using the conventional method possessed higher moisture contents and improved content homogeneity. The compaction behavior of melt granules were affected by their mean sizes, porosities, flow properties, binder, and moisture contents. The last two factors were responsible for the disparities in compaction behavior of melt granules produced from microwave-induced and conventional melt granulation.
机译:最近,微波诱导的熔体造粒被证明是常规熔体造粒的有前途的替代品,具有改进的过程监控功能。这项研究旨在比较微波诱导和常规熔融制粒生产的颗粒的物理化学和压实性能。在10升单锅高剪切处理器中,在微波感应加热和常规加热的影响下,将聚乙二醇(3,350)制成粉末混合物,该混合物按重量比例计含200 M乳糖和无水磷酸二钙。比较了两种方法制得的颗粒和压块的性质。相对于常规熔体造粒,在微波诱导的熔体造粒中加热的辐射粉末的加热速率较低。附聚物的生长以较慢的速度进行,因此需要更长的聚集时间以诱导生长。这些因素促使熔融颗粒中蒸发水分的损失更大。另外,在微波的影响下粉末的不均匀加热导致所得熔体颗粒的粘合剂含量的批间差异增加,并且含量均质性依赖于质量持续时间。由于粉末的增强的加热能力,在常规加热的影响下,附聚物的生长进行得更快。使用常规方法生产的熔体颗粒具有较高的水分含量和改善的含量均质性。熔体颗粒的压实行为受其平均尺寸,孔隙率,流动性,粘合剂和水分含量的影响。最后两个因素是由微波诱导和常规熔体造粒产生的熔体颗粒的压实行为差异的原因。

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