A small, physiological electric field orients cell division.
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Summary
It is reported on an observation that the orientation of cell division is directed by small, applied electric fields (EFs), and Cultured human corneal epithelial cells were exposed to a direct-current EF of physiological magnitude.
- Type
- article
- Published
- 1999-04-27
- Cited by
- 195
- References
- 53
- Access
- Open access
- OpenAlex
- https://openalex.org/W2001310533
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37204927
Keywords
Cell division, Morphogenesis, Cell biology, Biology, Cell
References
- Flow cytometry measurements of the DNA content of corneal epithelial cells during wound healing.
- Directed migration of corneal epithelial sheets in physiological electric fields.
- Time-lapse videomicroscopic study of in vitro wound closure in rabbit corneal cells.
- Cell lineage and the differentiation of corneal epithelial cells.
- Orientation of neurite growth by extracellular electric fields
- Orientation and directed migration of cultured corneal epithelial cells in small electric fields are serum dependent.
- Metaphase Spindles Rotate in the Neuroepithelium of Rat Cerebral Cortex
- Asymmetric segregation of Numb and Prospero during cell division
- Inscuteable and Staufen mediate asymmetric localization and segregation of prospero RNA during Drosophila neuroblast cell divisions.
- Single particle tracking of surface receptor movement during cell division
- Signals from the spindle midzone are required for the stimulation of cytokinesis in cultured epithelial cells.
- Significance of Mitotic Spindle Fibre Orientation in the Neural Tube
- Uncoupling histogenesis from morphogenesis in the vertebrate embryo by collapse of the transneural tube potential
- Determination of cleavage planes.
- Surface charge modifications associated with proliferation and differentiation in neuroblastoma cultures
- Cortical and cytoplasmic flow polarity in early embryonic cells of Caenorhabditis elegans
- Proliferation of oligodendrocyte precursor cells depends on electrical activity in axons
- Cleavage orientation and the asymmetric inheritance of Notch1 immunoreactivity in mammalian neurogenesis.
- Mechanism of the formation of contractile ring in dividing cultured animal cells. I. Recruitment of preexisting actin filaments into the cleavage furrow
- Cleavage planes in frog eggs are altered by strong magnetic fields.
Cited by
- Disruption of cancer cell replication by alternating electric fields.
- Influence of strong static magnetic fields on primary cortical neurons
- Study of the influence of a DC electric field on the development of the embryo of the nematode Caenorhabditis elegans
- Investigating the Effects of Applied Electric Fields on Microglial Cell Behaviour
- Exploring Electric Field-Induced Changes in Astrocyte Behavior
- Simulation and mathematical analyses of AC electric field driven apoptosis via microtubule disintegration
- Regulation of tissue repair and regeneration by electric fields.
- A molecular and functional analysis of the Drosophila melanogaster centrosome
- Electrical signals polarize neuronal organelles, direct neuron migration, and orient cell division
- Direct visualization of a stratified epithelium reveals that wounds heal by unified sliding of cell sheets
- Differentiation of human neural stem cells into neural networks on graphene nanogrids.
- Topological singularities and symmetry breaking in development
- Surface anisotropy orients cell divisions in contact guided cells.
- Application of conductive polymers, scaffolds and electrical stimulation for nerve tissue engineering
- The Work Surfaces of Morphogenesis: The Role of the Morphogenetic Field
- Involvement of cytoskeleton in orientation of cell division in contact guided cells.
- Dynamic Substrates for Cell Biology
- Spontaneous high-frequency action potential
- Engineering cell microenvironment using novel functional hydrogels
- The use of graphene in the self-organized differentiation of human neural stem cells into neurons under pulsed laser stimulation.
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