Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
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Boron nitride nanotube-mediated stimulation of cell co-culture on micro-engineered hydrogelsMesoscopic hydrogel molding to control the 3D geometry of bioartificial muscle tissuesNanotopography-guided tissue engineering and regenerative medicine.Skeletal muscle tissue engineering: methods to form skeletal myotubes and their applications.Combined technologies for microfabricating elastomeric cardiac tissue engineering scaffoldsUnderstanding the Role of ECM Protein Composition and Geometric Micropatterning for Engineering Human Skeletal MuscleControlling the orientation and synaptic differentiation of myotubes with micropatterned substrates.Strategies to improve regeneration of the soft palate muscles after cleft palate repair.Skeletal muscle-derived cell cultures as potent models in regenerative medicine research.Engineered skeletal muscle tissue for soft robotics: fabrication strategies, current applications, and future challenges.25th anniversary article: scalable multiscale patterned structures inspired by nature: the role of hierarchy.Anisotropic Materials for Skeletal-Muscle-Tissue Engineering.Chitooligomer-Immobilized Biointerfaces with Micropatterned Geometries for Unidirectional Alignment of Myoblast Cells.Cell Sheet-Based Tissue Engineering for Organizing Anisotropic Tissue Constructs Produced Using Microfabricated Thermoresponsive Substrates.Anisotropic cellular network formation in engineered muscle tissue through the self-organization of neurons and endothelial cells.Electrospun fibrous scaffolds promote breast cancer cell alignment and epithelial-mesenchymal transition.Rigidity-patterned polyelectrolyte films to control myoblast cell adhesion and spatial organization.Aligning cells in arbitrary directions on a membrane sheet using locally formed microwrinkles.Bioinspired Nanocomposite Hydrogels with Highly Ordered Structures.Patterning on Topography for Generation of Cell Culture Substrates with Independent Nanoscale Control of Chemical and Topographical Extracellular Matrix Cues.Biofunctional hydrogels for skeletal muscle constructs.
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Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on February 2009
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
@da
vědecký článek
@cs
name
Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
@en
Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
@nl
type
label
Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
@en
Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
@nl
prefLabel
Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
@en
Fabrication of skeletal muscle constructs by topographic activation of cell alignment.
@nl
P2093
P2860
P356
P1476
Fabrication of skeletal muscle constructs by topographic activation of cell alignment
@en
P2093
Hansong Zeng
Sudha Agarwal
P2860
P304
P356
10.1002/BIT.22080
P50
P577
2009-02-01T00:00:00Z