Estimation of disruption of animal cells by laminar shear stress
- 1 November 1992
- journal article
- research article
- Published by Wiley in Biotechnology & Bioengineering
- Vol. 40 (9), 1004-1010
- https://doi.org/10.1002/bit.260400903
Abstract
Using mechanical cell properties measured by micromanipulation, and a model of cell distortion in laminar flow fields, a method has been developed for predicting disruption of animal cells by laminar shear stresses. Predictions of the model were compared with measured losses of cell number and viability of TB/C3 murine hybridomas sheared in a cone and plate viscometer at shear rates up to 3950 s−1, and shear stresses up to 600 Nm−2, achieved by enhancement of viscosity with dextran. In all cases, the experimental, results and predictions were within 30%. Such excellent agreement suggests it might be possible to use micromanipulation measurements of animal cell mechanical properties to predict cell damage in more complex flow fields, such as those in bioreactors. © 1992 John Wiley & Sons, Inc.Keywords
This publication has 26 references indexed in Scilit:
- A physical characterization of GAP A3 hybridoma cells: Morphology, geometry, and mechanical propertiesBiotechnology & Bioengineering, 1991
- Fluid-mechanical damage of animal cells in bioreactorsTrends in Biotechnology, 1991
- Modified cellular metabolism in hybridomas subjected to hydrodynamic and other stressesBiotechnology Letters, 1990
- Oscillatory Viscometry of Red Blood Cell Suspensions: Relations to Cellular Viscoelastic PropertiesJournal of Rheology, 1986
- Two-dimensional approach to the motion of a red blood cell in a plane couette flow of plasmaInternational Journal of Multiphase Flow, 1984
- Fluid Drop-Like Transition of Erythrocytes under ShearScience, 1969
- Internal Viscosity of the Red Cell and a Blood Viscosity EquationNature, 1968
- A model system for evaluating shear in the design of stirred fermentorsBiotechnology & Bioengineering, 1966
- The formation of emulsions in definable fields of flowProceedings of the Royal Society of London. Series A, Containing Papers of a Mathematical and Physical Character, 1934