Chalmers J J, Bavarian F
Department of Chemical Engineering, Ohio State University, Columbus 43210.
Biotechnol Prog. 1991 Mar-Apr;7(2):151-8. doi: 10.1021/bp00008a010.
In this paper, the second in the series, the use of a microscopic, high-speed video system to study the interactions of two suspended insect cells strains, Trichoplusia ni (TN-368) and Spodoptera frugiperda (SF-9), with rupturing bubbles is reported. Events such as the adsorption of cells onto the bubble film and the mechanism of bubble rupture were observed. On the basis of these observations and the experimental and theoretical work of other researchers on bubble rupture and cell death as a result of sparging, it is proposed that cells are killed by the rapid acceleration of the bubble film after rupture and the high levels of shear stress in the boundary layer flow associated with bubble jet formation.
本文是该系列的第二篇论文,报道了使用微观高速视频系统研究两种悬浮昆虫细胞株,即粉纹夜蛾(TN - 368)和草地贪夜蛾(SF - 9)与破裂气泡相互作用的情况。观察到了细胞吸附到气泡膜上以及气泡破裂机制等事件。基于这些观察结果以及其他研究人员关于气泡破裂和鼓泡导致细胞死亡的实验与理论工作,有人提出细胞是因气泡破裂后气泡膜的快速加速以及与气泡射流形成相关的边界层流中的高剪切应力水平而死亡的。