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Ching‐Hwa Kiang, Safee Baig, Sawyer Rudy, Tsung-Cheng Lin, Xuewen Feng, Christopher Deem, Sithara S. Wijeratne, Ian Lian
Abstract
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The physics of cancer: the role of physical interactions and mechanical forces in metastasis
10.1038/nrc3080 · 2011
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Promotion of microtubule assembly in vitro by taxol
10.1038/277665a0 · doi-reference
Phenotypic Basis for Matrix Stiffness-Dependent Chemoresistance of Breast Cancer Cells to Doxorubicin
10.3389/fonc.2018.00337 · doi-reference
Cell mechanics and the cytoskeleton
10.1038/nature08908 · doi-reference
Microtubules as a target for anticancer drugs
10.1038/nrc1317 · doi-reference
Tissue Cells Feel and Respond to the Stiffness of Their Substrate
10.1126/science.1116995 · doi-reference
Direct Observation of Multiple Pathways of Single-Stranded DNA Stretching
10.1103/physrevlett.105.218104 · doi-reference
Use the force: membrane tension as an organizer of cell shape and motility
10.1016/j.tcb.2012.09.006 · doi-reference
Velocity convergence of free energy surfaces from single-molecule measurements using Jarzynski’s equality
10.1103/physreve.79.041912 · doi-reference
Experimental Free Energy Surface Reconstruction from Single-Molecule Force Spectroscopy using Jarzynski’s Equality
10.1103/physrevlett.99.068101 · doi-reference
Formation and Interaction of Membrane Tubes
10.1103/physrevlett.88.238101 · doi-reference
In pursuit of the mechanics that shape cell surfaces
10.1038/s41567-018-0187-8 · doi-reference
Dependence of Membrane Tether Strength on Substrate Rigidity Probed by Single-Cell Force Spectroscopy
10.1021/acs.jpclett.0c00730 · doi-reference
Multiple Membrane Tethers Probed by Atomic Force Microscopy
10.1529/biophysj.104.058180 · doi-reference
The nanomechanical signature of breast cancer
10.1038/nnano.2012.167 · doi-reference
Nanomechanical analysis of cells from cancer patients
10.1038/nnano.2007.388 · doi-reference
The development of single molecule force spectroscopy: from polymer biophysics to molecular machines
10.1017/s0033583522000087 · doi-reference
Activation of von Willebrand factor via mechanical unfolding of its discontinuous autoinhibitory module
10.1038/s41467-021-22634-x · doi-reference
Atomic force microscopy-based mechanobiology
10.1038/s42254-018-0001-7 · doi-reference
Atomic force microscopy-based characterization and design of biointerfaces
10.1038/natrevmats.2017.8 · doi-reference
Mechanical plasticity of cells
10.1038/nmat4689 · doi-reference
Mechanical force releases nascent chain–mediated ribosome arrest in vitro and in vivo
10.1126/science.1261909 · doi-reference
Defining Single Molecular Forces Required to Activate Integrin and Notch Signaling
10.1126/science.1231041 · doi-reference
Mechanical Activation of a Multimeric Adhesive Protein Through Domain Conformational Change
10.1103/physrevlett.110.108102 · doi-reference
The molecular elasticity of the extracellular matrix protein tenascin
10.1038/30270 · doi-reference
Single-cell force spectroscopy
10.1242/jcs.030999 · doi-reference
Atomic force microscopy as a multifunctional molecular toolbox in nanobiotechnology
10.1038/nnano.2008.100 · doi-reference
DNA overwinds when stretched
10.1038/nature04974 · doi-reference
Discrete interactions in cell adhesion measured by single-molecule force spectroscopy
10.1038/35014000 · doi-reference
Effects of extracellular matrix viscoelasticity on cellular behaviour
10.1038/s41586-020-2612-2 · doi-reference
Physical traits of cancer
10.1126/science.aaz0868 · doi-reference
The physics of cancer: the role of physical interactions and mechanical forces in metastasis
10.1038/nrc3080 · doi-reference