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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >In line monitoring of the powder flow behavior and drug content in a Fette 3090 feed frame at different operating conditions using Near Infrared spectroscopy
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In line monitoring of the powder flow behavior and drug content in a Fette 3090 feed frame at different operating conditions using Near Infrared spectroscopy

机译:在使用近红外光谱的不同操作条件下,在Fette 3090进料框架中对粉末流动行为和药物含量的监测

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Near infrared (NIR) spectroscopy was used to determine the drug concentration in 3% (w/w) acetaminophen blends within the complex flow regime of the tablet press feed frame just before tablet compaction. NIR spectra also provided valuable information on the powder flow behavior within the feed frame and were used to track when a process enters or leaves the steady state. A partial least squares regression calibration model was developed with powder mixtures that varied from 1.5 to 4.5% (w/w) by obtaining 135 spectra after steady state for each concentration while the feed frame and die disc operated at 30.5 revolutions per minute (rpm). The calibration model determined drug concentration in validation blends with a root mean square error of prediction and bias below 0.1% (w/w). The robustness of the NIR calibration model was evaluated by determining the effect of variation on the operating conditions (paddle wheel speed and die disc speed) on NIR predictions. This work found that the paddle wheel speed can be increased up to 30% and the die disc speed decrease 10% without affecting NIR predictions. The results demonstrated that paddle wheel speed has a significant effect on the wave powder behavior (frequency and amplitude) but does not have significant effect on the mass hold-up within feed frame. The die disc speed does not affect wave powder behavior but affects significantly the mass hold-up inside the feed frame. This information can be used to reduce the tablet weight variability and ensure that this critical attribute is met. (C) 2018 Elsevier B.V. All rights reserved.
机译:近红外(NIR)光谱法用于确定在片剂压实前的片剂压制框架的复杂流动状态下的3%(w / w)乙酰氨基酚共混物中的药物浓度。 NIR光谱还提供了关于进料框架内的粉末流动行为的有价值的信息,并且用于追踪当过程进入或离开稳态时。偏重最小二乘回归校准模型是用粉末混合物开发,粉末混合物通过在每个浓度的稳定状态下获得135个光谱而变化,而进料框架和管芯在每分钟的30.5转旋转(RPM)之后通过1.5℃。 。校准模型确定验证中的药物浓度混合,具有低于0.1%(w / w)的预测和偏差的根均方误差。通过确定在NIR预测上的操作条件(桨轮速度和管芯速度)的变化的影响来评估NIR校准模型的鲁棒性。这项工作发现,桨叶速度可以增加高达30%,并且管芯盘速度降低10%而不会影响NIR预测。结果表明,桨叶速度对波粉行为(频率和幅度)具有显着影响,但对进料框架内的质量升压没有显着影响。管芯盘速度不会影响波粉行为,但在进料框架内部的质量保持显着影响。此信息可用于降低平板重量可变性并确保满足此关键属性。 (c)2018年elestvier b.v.保留所有权利。

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