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A Cost-effective and Reliable Method to Predict Mechanical Stress in Single-use and Standard Pumps

机译:一种经济有效的可靠方法来预测一次性和标准泵的机械应力

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摘要

Pumps are mainly used when transferring sterile culture broths in biopharmaceutical and biotechnological production processes. However, during the pumping process shear forces occur which can lead to qualitative and/or quantitative product loss. To calculate the mechanical stress with limited experimental expense, an oil-water emulsion system was used, whose suitability was demonstrated for drop size detections in bioreactors1. As drop breakup of the oil-water emulsion system is a function of mechanical stress, drop sizes need to be counted over the experimental time of shear stress investigations. In previous studies, the inline endoscopy has been shown to be an accurate and reliable measurement technique for drop size detections in liquid/liquid dispersions. The aim of this protocol is to show the suitability of the inline endoscopy technique for drop size measurements in pumping processes. In order to express the drop size, the Sauter mean diameter d32 was used as the representative diameter of drops in the oil-water emulsion. The results showed low variation in the Sauter mean diameters, which were quantified by standard deviations of below 15%, indicating the reliability of the measurement technique.
机译:在生物制药和生物技术生产过程中转移无菌培养液时,主要使用泵。但是,在泵送过程中会产生剪切力,这会导致产品定性和/或定量损失。为了以有限的实验费用计算机械应力,使用了油水乳液系统,该系统适用于生物反应器 1 中的液滴尺寸检测。由于油水乳液系统的液滴破裂是机械应力的函数,因此需要在剪切应力研究的整个实验时间内计算液滴的大小。在以前的研究中,在线内窥镜检查已被证明是一种准确可靠的测量技术,用于检测液/液分散体中的液滴尺寸。该协议的目的是证明在线内窥镜技术适用于泵送过程中液滴尺寸的测量。为了表示液滴的大小,将索特平均直径d32用作油水乳液中液滴的代表性直径。结果表明,索特平均直径的变化很小,可以通过低于15%的标准偏差进行量化,表明了测量技术的可靠性。

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