Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
about
ATR-mediated regulation of nuclear and cellular plasticityThe nuclear lamina is mechano-responsive to ECM elasticity in mature tissueVolume regulation and shape bifurcation in the cell nucleus.Derivation and osmotolerance characterization of three immortalized tilapia (Oreochromis mossambicus) cell lines.Synergy between Piezo1 and Piezo2 channels confers high-strain mechanosensitivity to articular cartilage.Biophysical Regulation of Chromatin Architecture Instills a Mechanical Memory in Mesenchymal Stem CellsA Case for the Nuclear Membrane as a Mechanotransducer.Differentiation alters stem cell nuclear architecture, mechanics, and mechano-sensitivity.Dynamic regulation of nuclear architecture and mechanics-a rheostatic role for the nucleus in tailoring cellular mechanosensitivity.Cell-Biological Studies of Osmotic Shock Response in Streptomyces sppMechanically Induced Chromatin Condensation Requires Cellular Contractility in Mesenchymal Stem Cells.Actomyosin and vimentin cytoskeletal networks regulate nuclear shape, mechanics and chromatin organization.Activation of autophagy via Ca(2+)-dependent AMPK/mTOR pathway in rat notochordal cells is a cellular adaptation under hyperosmotic stress.Effects of Osmolarity on the Spontaneous Calcium Signaling of In Situ Juvenile and Adult Articular Chondrocytes.Roles of Cross-Membrane Transport and Signaling in the Maintenance of Cellular Homeostasis.Role of Piezo Channels in Joint Health and Injury.Cell volume change through water efflux impacts cell stiffness and stem cell fate.In Vivo Multiscale and Spatially-Dependent Biomechanics Reveals Differential Strain Transfer Hierarchy in Skeletal Muscle.Stem Cell Differentiation is Regulated by Extracellular Matrix Mechanics.Coordinated increase of nuclear tension and lamin-A with matrix stiffness outcompetes lamin-B receptor that favors soft tissue phenotypes.Controlling Cellular Volume via Mechanical and Physical Properties of Substrate.Shape and Dynamics of Adhesive Cells: Mechanical Response of Open Systems.Osmotic modulation of chromatin impacts on efficiency and kinetics of cell fate modulation.
P2860
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P2860
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
description
2013 nî lūn-bûn
@nan
2013年の論文
@ja
2013年論文
@yue
2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
@zh-tw
2013年论文
@wuu
2013年论文
@zh
2013年论文
@zh-cn
name
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
@ast
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
@en
type
label
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
@ast
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
@en
prefLabel
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
@ast
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
@en
P2093
P2860
P1433
P1476
Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes
@en
P2093
David A Lee
Graham D McPhail
Jerome Irianto
Martin M Knight
Rui P Martins
P2860
P304
P356
10.1016/J.BPJ.2013.01.006
P407
P577
2013-02-01T00:00:00Z