Europhysics Letters (EPL) · 2008 · 51 citations · 11 references
The notion of tissue surface tension has provided a physical understanding of morphogenetic phenomena such as tissue spreading or cell sorting. The measurement of tissue surface tension so far relied on strong approximations on the geometric profile of a spherical droplet compressed between parallel plates. We solved the Laplace equation for this geometry and tested its solution on true liquids and embryonic tissue fragments as well as multicellular aggregates. The analytic solution provides the surface tension in terms of easily and accurately measurable geometric parameters. Experimental results show that the various tissues and multicellular aggregates studied here are incompressible and, similarly to true liquids, possess effective surface tensions that are independent of the magnitude of the compressive force and the volume of the droplet.
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Reconstruction of Tissues by Dissociated Cells
Malcolm S. Steinberg · Science · 1963 · 1.1K citations
Regenerative Medicine, Tissue Engineering, Dissociated Cells +7
Viscoelastic Properties of Living Embryonic Tissues: a Quantitative Study
Gabor Forgács, Ramsey A. Foty, Yinon Shafrir et al. · Biophysical Journal · 1998 · 485 citations · Full text
Surface tensions of embryonic tissues predict their mutual envelopment behavior
Ramsey A. Foty, Cathie M. Pfleger, Gabor Forgács et al. · Development · 1996 · 474 citations