Dynamic cell behavior on shape memory polymer substrates.
Explore this paper's citation graph
Summary
Control of cell behavior is demonstrated through shape-memory-activated topographic changes and the use of active cell culture SMP substrates is introduced for investigation of mechanotransduction, cell biomechanical function, and cell soft-matter physics.
- Type
- article
- Published
- 2011-03-01
- Cited by
- 233
- References
- 49
- OpenAlex
- https://openalex.org/W1986623338
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14373282
Keywords
Materials science, Mechanobiology, Mechanotransduction, Shape-memory polymer, Substrate (aquarium)
References
- Shape memory effect exhibited by smectic-C liquid crystalline elastomers.
- Regulation of cellular morphology using temperature-responsive hydrogel for integrin-mediated mechanical force stimulation.
- Cell locomotion and focal adhesions are regulated by substrate flexibility.
- Polymer live-cell array for real-time kinetic imaging of immune cells.
- Conducting Shape Memory Polyurethane‐Polypyrrole Composites for an Electroactive Actuator
- Exploring and engineering the cell surface interface.
- Chemically nanopatterned surfaces using polyelectrolytes and ultraviolet-cured hard molds.
- Mechanically active scaffolds from radio‐opaque shape‐memory polymer‐based composites
- Mechanotransduction gone awry
- Osteoblast adhesion on biomaterials.
- Controlled two-photon photodegradation of PEG hydrogels to study and manipulate subcellular interactions on soft materials
- Reversible on-demand cell alignment using reconfigurable microtopography.
- A photo-modulatable material for probing cellular responses to substrate rigidity
- Biomedical applications of thermally activated shape memory polymers
- A flexible, quantum dot-labeled cantilever post array for studying cellular microforces
- Cellular mechanics study in cardiac myocytes using PDMS pillars array
- Tissue Engineering Using Laminar Cellular Assemblies
- Capture and release of proteins on the nanoscale by stimuli-responsive elastin-like polypeptide "switches".
- Synthesis and characterization of macroporous thermosensitive hydrogels from recombinant elastin-like polymers.
- Cell Culture on a Thermo-Responsive Polymer Surface
Cited by
- Regenerative medicine and tissue engineering- Cells and biomaterials
- Real-time sensing of epithelial cell-cell and cell-substrate interactions by impedance spectroscopy on porous substrates
- Active surface wrinkling influences cell migration behavior and control
- Observing, Understanding, and Manipulating Biological Membranes
- Challenges and Opportunities for Tissue-Engineering Polarized Epithelium
- Shape-memory properties of degradable electrospun scaffolds based on hollow microfibers
- Electrospun biomimetic fibrous scaffold from shape memory polymer of PDLLA-co-TMC for bone tissue engineering.
- Reversible switching transitions of stimuli-responsive shape changing polymers
- Soft bacterial polyester‐based shape memory nanocomposites featuring reconfigurable nanostructure
- Mimicking dynamic in vivo environments with stimuli-responsive materials for cell culture.
- The taming of the cell: shape-memory nanopatterns direct cell orientation
- Near‐Infrared‐Irradiation‐Induced Remote Activation of Surface Shape‐Memory to Direct Cell Orientations
- Poly(caprolactone) shape memory scaffold for bone tissue engineering
- Shape memory polymers for active cell culture.
- Shape-Memory and Shape-Changing Polymers
- Polymer Supported Lipid Bilayers
- A contour-based particle tracking system for the study of cell migratory behavior
- Mechanisms of the Shape Memory Effect in Polymeric Materials
- Remotely actuated shape memory effect of electrospun composite nanofibers.
- POLYMER SCAFFOLDS FOR REGENERATIVE THERAPIES — DESIGN OF HIERARCHICALLY ORGANIZED STRUCTURES AND THEIR MORPHOLOGICAL CHARACTERIZATION
Related papers
- Mechanobiology of tendon.
- Mechanics rules cell biology
- A Hitchhiker’s Guide to Mechanobiology
- Reviewrules cell biology
- Innovative Tools for Mechanobiology: Unraveling Outside-In and Inside-Out Mechanotransduction
- Investigation of Shape Memory Polymers and Their Hybrid Composites
- Appreciating force and shape — the rise of mechanotransduction in cell biology
- Mechanobiology of bone remodeling and fracture healing in the aged organism
- Steering cell behavior through mechanobiology in 3D: A regenerative medicine perspective