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Batch and Semicontinuous Aggregation and Sedimentation of Hybridoma Cells by Acoustic Resonance Fields

机译:通过声共振场对杂交瘤细胞进行批量和半连续聚集和沉降

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AbstractUltrasound was used to enhance the sedimentation of hybridoma cells from medium in a 75 mL resonator chamber. Forces in the acoustic standing waves aggregated the cells, and the aggregates were then rapidly sedimented by gravity. Cell separation increased with acoustic treatment time and cell concentration. The separation efficiency was over 97 for cell concentrations between 1066 and 107cells/mL. During acoustic treatment at 180 W/L, the medium temperature increased at a rate of 1.3 °C/min. Ultrasonic exposures up to 220 W/L did not influence the viability or subsequent growth and antibody production of the cells. A decrease in cell viability was observed at a power level of 260 W/L. Batch separation efficiencies were as high as 98. Acoustic separation was tested under semicontinuous operation, and above 90 separation efficiency was achieved at a flow rate of 0.7 L/h
机译:摘要超声用于增强杂交瘤细胞在75 mL谐振腔中的沉降。声驻波中的力使细胞聚集,然后聚集体在重力作用下迅速沉降。细胞分离随着声学处理时间和细胞浓度的增加而增加。细胞浓度在 1066 至 107 个细胞/mL 之间的分离效率超过 97%。在180 W/L的声学处理过程中,介质温度以1.3 °C/min的速度升高。高达 220 W/L 的超声暴露不会影响细胞的活力或随后的生长和抗体产生。在功率水平为 260 W/L 时观察到细胞活力下降,批量分离效率高达 98%。在半连续运行下测试声学分离,在0.7 L/h的流速下实现了90%以上的分离效率

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