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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 >On-line monitoring of blend uniformity in continuous drug product manufacturing process-The impact of powder flow rate and the choice of spectrometer: Dispersive vs. FT
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On-line monitoring of blend uniformity in continuous drug product manufacturing process-The impact of powder flow rate and the choice of spectrometer: Dispersive vs. FT

机译:在线监控连续药品生产过程中的混合物均匀性-粉末流速和光谱仪选择的影响:分散与FT

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One of the commonly acknowledged issues in continuous manufacturing of drug products is how to provide a representative sampling on flowing powder to assure its blend uniformity. An investigation was conducted to improve understanding on the impact of powder flow rate under different continuous manufacturing conditions and the impact of optical parameters (such as resolution, co-adds, and integration time) on NIR spectral quality with respect to a dispersive and a Fourier transform instrument. A partial least squares (PLS)-based spectral pretreatment was found useful to tackle the impact of different flow rates on NIR spectral signals. Multivariate figures of merit (FOM) were used to evaluate performances across different instruments and optical settings and discover the advantageous selectivity and sensitivity on the Fourier transform than the dispersive instrument regardless of the use of co-adds. (C) 2015 Elsevier B.V. All rights reserved.
机译:连续生产药品中公认的问题之一是如何对流动性粉末进行代表性采样以确保其混合均匀性。进行了一项调查,以增进对不同连续制造条件下粉末流量的影响以及光学参数(例如分辨率,共添加和积分时间)对色散和傅立叶近红外光谱质量的影响的了解变换仪器。发现基于局部最小二乘(PLS)的光谱预处理可用于解决不同流速对NIR光谱信号的影响。多变量品质因数(FOM)用于评估不同仪器和光学设置之间的性能,并且发现与分散仪器相比,傅立叶变换在傅立叶变换上的选择性和灵敏度都高,无论使用共添加如何。 (C)2015 Elsevier B.V.保留所有权利。

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