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首页> 外文期刊>European journal of pharmaceutical sciences >Process analytical technology (PAT) approach to the formulation of thermosensitive protein-loaded pellets: Multi-point monitoring of temperature in a high-shear pelletization
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Process analytical technology (PAT) approach to the formulation of thermosensitive protein-loaded pellets: Multi-point monitoring of temperature in a high-shear pelletization

机译:使用过程分析技术(PAT)配制载有热敏蛋白的小丸:在高剪切造粒中对温度进行多点监控

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摘要

In the literature there are some publications about the effect of impeller and chopper speeds on product parameters. However, there is no information about the effect of temperature. Therefore our main aim was the investigation of elevated temperature and temperature distribution during pelletization in a high shear granulator according to process analytical technology. During our experimental work, pellets containing pepsin were formulated with a high-shear granulator. A specially designed chamber (Opulus Ltd.) was used for pelletization. This chamber contained four PyroButton-TH (R) sensors built in the wall and three PyroDiff (R) sensors 1, 2 and 3 cm from the wall. The sensors were located in three different heights. The impeller and chopper speeds were set on the basis of 3(2)factorial design. The temperature was measured continuously in 7 different points during pelletization and the results were compared with the temperature values measured by the thermal sensor of the high-shear granulator. The optimization parameters were enzyme activity, average size, breaking hardness, surface free energy and aspect ratio. One of the novelties was the application of the specially designed chamber (Opulus Ltd.) for monitoring the temperature continuously in 7 different points during high-shear granulation. The other novelty of this study was the evaluation of the effect of temperature on the properties of pellets containing protein during high-shear pelletization. (C) 2016 Elsevier B.V. All rights reserved.
机译:在文献中,有一些关于叶轮和切碎机速度对产品参数的影响的出版物。但是,没有有关温度影响的信息。因此,我们的主要目的是根据工艺分析技术研究高剪切制粒机造粒过程中的高温和温度分布。在我们的实验工作中,用高剪切造粒机配制了含有胃蛋白酶的颗粒。使用专门设计的腔室(Opulus Ltd.)进行制粒。该腔室包含四个内置在墙壁中的PyroButton-TH(R)传感器和三个距墙壁1、2和3厘米的PyroDiff(R)传感器。传感器位于三个不同的高度。叶轮和切碎机的速度是根据3(2)出厂设计设定的。在制粒过程中,在7个不同点连续测量温度,并将结果与​​高剪切制粒机的热传感器测得的温度值进行比较。优化参数是酶活性,平均大小,断裂硬度,表面自由能和长宽比。新颖性之一是应用专门设计的腔室(Opulus Ltd.)在高剪切造粒过程中连续7个不同点连续监测温度。这项研究的另一个新颖之处是在高剪切造粒过程中,温度对含蛋白质的颗粒性质的影响的评估。 (C)2016 Elsevier B.V.保留所有权利。

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