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Ordering Single Cells and Single Embryos in 3D Confinement: A New Device for High Content Screening
Published on: September 18, 2016
The cytoskeleton, cellular motility and the reductionist agenda
1Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven Connecticut 06520-8103, USA. thomas.pollard@yale.edu
Abstract:
Eukaryotic cells depend on cytoskeletal polymers and molecular motors to establish their asymmetrical shapes, to transport intracellular constituents and to drive their motility. Cell biologists are using diverse experimental approaches to understand the molecular basis of cellular movements and to explain why defects in the component proteins cause disease. Much of the molecular machinery for motility evolved in early eukaryotes, so a limited set of general principles can explain the motility of most cells.
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