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Rat basophilic leukemia cells stiffen when they secrete
Z. Y. Liu
, J. I. Young
,
E. L. Elson
Department of Biochemistry & Molecular Biophysics
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
Center of Regenerative Medicine
DBBS - Molecular Cell Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
25
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Scopus citations
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Keyphrases
Mechanical Response
100%
Rat Basophilic Leukemia Cells
100%
Cytochalasin D
50%
Protein Kinase C
50%
Mast Cells
25%
Second Messenger
25%
Cell Surface
25%
Actin Filaments
25%
Cytoskeleton
25%
Ionophore
25%
Intracellular Calcium
25%
Phorbol Ester
25%
A23187
25%
Lysine
25%
Basophils
25%
Competitive Inhibitor
25%
Receptor Complex
25%
IgE Receptor
25%
Antigen Binding
25%
Receptor Crosslinking
25%
Stimulus-secretion Coupling
25%
Mechanical Changes
25%
Filament Assembly
25%
Cell Deformability
25%
Bivalent Ligand
25%
Neuroscience
Receptor
100%
Protein Kinase C
66%
Actin Filament
33%
Antigen
33%
Cytoskeleton
33%
Second Messenger System
33%
Protein Kinases
33%
Immunoglobulin E
33%
Mast Cell
33%
Competitive Inhibition
33%
Phorbol
33%
A23187
33%
Ionophore
33%
Lysine
33%
Immunoglobulin E Receptor
33%
Antigen Binding
33%
Basophil Cell
33%
Immunology and Microbiology
Secretion (Process)
100%
Leukemia Cell
100%
Rat
100%
Cross Linking
20%
Immunoglobulin E
20%
Mast Cell
10%
Cell Surface
10%
Cytoskeleton
10%
Antigen
10%
Basophil
10%
Actin Filament
10%
Calcium Cell Level
10%
Competitive Inhibition
10%
Stimulus Secretion Coupling
10%
Protein Kinase C
10%
Lysine
10%
Second Messenger
10%
Antigen Binding
10%
Phosphotransferase
10%
Kinase
10%
Biochemistry, Genetics and Molecular Biology
Secretion (Process)
100%
Rat
100%
Protein Kinase C
20%
Cross-Link
20%
Immunoglobulin E
20%
Protein Kinases
10%
Second Messenger System
10%
Calcium Cell Level
10%
Actin
10%
Cytoskeleton
10%
Mast Cell
10%
Calcium Ion
10%
Competitive Inhibition
10%
Antigen Binding
10%
RBL Cells
10%
Stimulus Secretion Coupling
10%
Lysine
10%