Journal article
Analytic study of three-dimensional single cell migration with and without proteolytic enzymes
RH Chisholm, BD Hughes, KA Landman, MH Zaman
Cellular and Molecular Bioengineering | SPRINGER | Published : 2013
Abstract
Cell motility is a fundamental physiological process that regulates cellular fate in healthy and diseased systems. Cells cultured in 3D environments often exhibit biphasic dependence of migration speed with cell adhesion. Much is not understood about this very common behavior. A phenomenological model for 3D single-cell migration that exhibits biphasic behavior and highlights the important role of steric hindrance is developed and studied analytically. Changes in the biphasic behavior in the presence of proteolytic enzymes are investigated. Our methods produce a framework to determine analytic formulae for the mean cell speed, allowing general statements in terms of parameters to be explored..
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Funding Acknowledgements
This work is supported by the Australian Research Council (ARC). Kerry Landman is an ARC Professorial Fellow.