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Updated: Aug 10, 2026

Cell Co-culture Patterning Using Aqueous Two-phase Systems
Published on: March 26, 2013
2- and 3-dimensional synthetic large-scale de novo patterning by mammalian cells through phase separation
Elise Cachat1, Weijia Liu1, Kim C Martin1
1Centre for Integrative Physiology &Synthsys Centre for Synthetic &Systems Biology, University of Edinburgh, George Square, Edinburgh EH8 9XB, UK.
Abstract:
Synthetic biology provides an opportunity for the construction and exploration of alternative solutions to biological problems - solutions different from those chosen by natural life. To this end, synthetic biologists have built new sensory systems, cellular memories, and alternative genetic codes. There is a growing interest in applying synthetic approaches to multicellular systems, especially in relation to multicellular self-organization. Here we describe a synthetic biological system that confers large-scale de novo patterning activity on 2-D and 3-D populations of mammalian cells. Instead of using the reaction-diffusion mechanisms common in real embryos, our system uses cadherin-mediated phase separation, inspired by the known phenomenon of cadherin-based sorting. An engineered self-organizing, large-scale patterning system requiring no prior spatial cue may be a significant step towards the construction of self-assembling synthetic tissues.
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