Biomimetic Three-Dimensional Anisotropic Geometries by Uniaxial Stretch of Poly(ɛ-Caprolactone) Films for Mesenchymal Stem Cell Proliferation, Alignment, and Myogenic Differentiation
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Summary
It is concluded that uniaxial stretching has potential in patterning film topography with anisotropic structures and could be used as "basic units" to create tissue constructs with microscale control of cellular alignment and elongation for tissue engineering applications.
- Type
- article
- Published
- 2013-01-04
- Cited by
- 54
- References
- 51
- Access
- Open access
- OpenAlex
- https://openalex.org/W1988265183
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13591606
Keywords
Ridge, Materials science, Mesenchymal stem cell, Elongation, Fabrication
References
- Current State of the Art in Myocardial Tissue Engineering
- The return of a forgotten polymer : Polycaprolactone in the 21st century
- Poisson's Ratio in Linear Viscoelasticity – A Critical Review
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- Electrospun PCL nanofibers with anisotropic mechanical properties as a biomedical scaffold
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- Stacking of aligned cell sheets for layer-by-layer control of complex tissue structure.
- Designing materials to direct stem-cell fate
- Polymer nanofibrous structures: Fabrication, biofunctionalization, and cell interactions
- The ability of corneal epithelial cells to recognize high aspect ratio nanostructures
- Mechanosensitivity of fibroblast cell shape and movement to anisotropic substratum topography gradients
- Regulating orientation and phenotype of primary vascular smooth muscle cells by biodegradable films patterned with arrays of microchannels and discontinuous microwalls.
- Bioengineered Three-Layered Robust and Elastic Artery Using Hemodynamically-Equivalent Pulsatile Bioreactor
- Stem cell differentiation to epidermal lineages on electrospun nanofibrous substrates for skin tissue engineering.
- Correlation of proliferation, morphology and biological responses of fibroblasts on LDPE with different surface wettability
- The effect of the alignment of electrospun fibrous scaffolds on Schwann cell maturation.
- Cell Sensing and Response to Micro- and Nanostructured Surfaces Produced by Chemical and Topographic Patterning
- Apparent contact angles on rough surfaces: the Wenzel equation revisited
- Direct differentiation of human embryonic stem cells into selective neurons on nanoscale ridge/groove pattern arrays.
Cited by
- Dual-Microstructured Porous, Anisotropic Film for Biomimicking of Endothelial Basement Membrane.
- Three-dimensional culture of mesenchymal stem cells
- Sensing the Difference: The Influence of Anisotropic Cues on Cell Behavior
- Anisotropic Poly(Ethylene Glycol)/Polycaprolactone Hydrogel–Fiber Composites for Heart Valve Tissue Engineering
- HMSCs bridging across micro-patterned grooves
- Influence of Culture Conditions and Extracellular Matrix Alignment on Human Mesenchymal Stem Cell Invasion into Decellularized Engineered Tissues
- Arrays of quasi-hexagonally ordered silica nanopillars with independently controlled areal density, diameter and height gradients
- Graphite Oxide to Graphene. Biomaterials to Bionics
- The effect of bioartificial constructs that mimic myocardial structure and biomechanical properties on stem cell commitment towards cardiac lineage.
- Efficient myogenic commitment of human mesenchymal stem cells on biomimetic materials replicating myoblast topography
- Conductive interpenetrating networks of polypyrrole and polycaprolactone encourage electrophysiological development of cardiac cells.
- Biodegradable Polymeric Films and Membranes Processing and Forming for Tissue Engineering
- Biomimetic three-dimensional anisotropic geometries by uniaxial stretching of poly(ε-caprolactone) films: degradation and mesenchymal stem cell responses.
- Enhancing mesenchymal stem cell response using uniaxially stretched poly(ε-caprolactone) film micropatterns for vascular tissue engineering application.
- Direct E-jet printing of three-dimensional fibrous scaffold for tendon tissue engineering.
- The control of cell orientation using biodegradable alginate fibers fabricated by near-field electrospinning.
- Uniformly-dispersed nanohydroxapatite-reinforced poly(ε-caprolactone) composite films for tendon tissue engineering application.
- Mechanically-enhanced three-dimensional scaffold with anisotropic morphology for tendon regeneration
- Degradation behaviors of geometric cues and mechanical properties in a 3D scaffold for tendon repair.
- Highly aligned and interconnected porous poly(ε-caprolactone) scaffolds derived from co-continuous polymer blends
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