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Influence of hydrodynamic shear stress on microcarrier-attached cell growth: Cell line dependency and surfactant protection
Journal article

Influence of hydrodynamic shear stress on microcarrier-attached cell growth: Cell line dependency and surfactant protection

Suh-Chin Wu
Bioprocess Engineering, Vol.21(3), pp.201-206
1999

Abstract

Animal cell injuries due to fluid-mechanical forces generated by hydrodynamic mixing in bioreactors could become more detrimental for microcarrier systems. In this work, the effects of cell protective surfactants such as pluronic F68 (F68) and polyvinyl alcohol (PVA) were investigated on microcarrier-grown cells under various hydrodynamic stress conditions. Experimental results indicated that adding 0.2% F68 or 0.2% PVA in media enhanced Vero Cell growth against fluid-mechanical forces, but not CHO-K1 and BHK-21 cells. Although affecting the specific growth rate of Vero cells, hydrodynamic shear forces only slightly influenced CHO-K1 and BHK-21 cells. The cellular sensitivity against fluid-mechanical forces for these three cell lines had the following order: Vero cells > CHO-K1 cells > BHK-21 cells. It seems that, the hydrodynamic effects on microcarrier-grown cells and the effectiveness of surfactant protection are heavily dependent on the culture cell type.

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