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Cell Biochemistry and Biophysics|April 26, 2011
The biomechanical properties of 3d extracellular matrices and embedded cells regulate the invasiveness of cancer cellsClaudia T MierkeMolecular Biosystems|April 14, 2012
Endothelial cell's biomechanical properties are regulated by invasive cancer cellsClaudia T MierkeEuropean Journal of Cell Biology|February 9, 2013
Physical break-down of the classical view on cancer cell invasion and metastasisClaudia T MierkeCell Biochemistry and Biophysics|January 19, 2013
Phagocytized beads reduce the α5β1 integrin facilitated invasiveness of cancer cells by regulating cellular stiffnessClaudia T MierkeCell Communication and Signaling : CCS|September 9, 2010
The role of the tissue microenvironment in the regulation of cancer cell motility and invasionJan Brábek, Claudia T Mierke, Daniel Rösel, et al.Biochemical and Biophysical Research Communications|November 6, 2007
CD24 induces localization of beta1 integrin to lipid raft domainsSteffen Runz, Claudia T Mierke, Safwan Joumaa, et al.Scientific Reports|February 17, 2017
Focal adhesion kinase activity is required for actomyosin contractility-based invasion of cells into dense 3D matricesClaudia T Mierke, Tony Fischer, Stefanie Puder, et al.International Journal of Oncology|March 4, 2010
Neoplastic progression of the human breast cancer cell line G3S1 is associated with elevation of cytoskeletal dynamics and upregulation of MT1-MMPOndrej Tolde, Daniel Rösel, Claudia T Mierke, et al.Biomaterials|March 31, 2015
The phenotype of cancer cell invasion controlled by fibril diameter and pore size of 3D collagen networksJiranuwat Sapudom, Stefan Rubner, Steve Martin, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|August 7, 2007
Stress fluctuations and motion of cytoskeletal-bound markersCarina Raupach, Daniel Paranhos Zitterbart, Claudia T Mierke, et al.Pageof 2