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Unraveling the mechano-responsive mechanisms at Focal Adherens Junctions
J. Oldenburg
University Medical Center Utrecht
extern
Research output
:
Thesis
›
Doctoral thesis 1 (Research UU / Graduation UU)
Overview
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Keyphrases
Adherens Junction
100%
Responsive Mechanism
100%
Mechanoresponsive
100%
Cell-cell Junctions
50%
Cadherin
50%
Molecular Composition
33%
Endothelial Barrier
33%
Epithelial Barrier
33%
Branching Morphogenesis
33%
Mass Spectrometry
16%
Cell Adhesion
16%
Pullout
16%
Cytoskeleton
16%
Junction Formation
16%
Mechanical Cues
16%
Barrier Formation
16%
Novel Protein
16%
Tissue Mechanics
16%
Protein Sample
16%
Chemical Cues
16%
Actomyosin Contractility
16%
Vinculin
16%
Mechanical Regulation
16%
Mechanosensitive
16%
Zyxin
16%
Salivary Gland Organoids
16%
Medicine and Dentistry
Adherens Junction
100%
Cadherin
50%
Cell Junction
50%
Branching Morphogenesis
33%
Mass Spectrum
16%
Cytoskeleton
16%
Salivary Gland
16%
Vasodilator Stimulated Phosphoprotein
16%
Organoid
16%
Vinculin
16%
Transcranial Electrical Stimulation
16%
Muscle Contractility
16%
Myosin Adenosine Triphosphatase
16%
Zyxin
16%
Actin
16%
Cell Adhesion
16%
Biochemistry, Genetics and Molecular Biology
Adherens Junction
100%
Cell Junction
50%
Cadherin
50%
Branching Morphogenesis
33%
Cell Adhesion
16%
Mass Spectrometry
16%
Cytoskeleton
16%
Muscle Contractility
16%
Zyxin
16%
Vinculin
16%
Actin
16%
Myosin ATPase
16%
Neuroscience
Adherens Junction
100%
Cadherin
50%
Morphogenesis
33%
Transcranial Electrical Stimulation
16%
Actin Cytoskeleton
16%
Myosin ATPase
16%
Mass Spectrometry
16%
Vasodilator Stimulated Phosphoprotein
16%
Zyxin
16%
Vinculin
16%
Cell Adhesion
16%
Salivary Gland
16%
Pharmacology, Toxicology and Pharmaceutical Science
Cadherin
100%
Zyxin
33%
Vinculin
33%
Vasodilator Stimulated Phosphoprotein
33%
Myosin Adenosine Triphosphatase
33%
Actin
33%