The study of cells responding to an electroconductive environment is impeded by the lack of a method, which would allow the encapsulation of cells in an extracellular matrix-like 3D electroactive matrix, and more challengingly, permit a simple mechanism to release cells for further characterization. Herein, we report a polysaccharide-based conductive hydrogel system formed via a β-cyclodextrin-adamantane host–guest interaction. Oxidative polymerization of 3,4-ethylenedioxythiophene (EDOT) in the presence of adamantyl-modified sulfated alginate (S-Alg-Ad) results in bio-electroconductive polymer PEDOT:S-Alg-Ad, which can form hydrogel with poly-β-cyclodextrin (Pβ-CD). The PEDOT:S-Alg-Ad/Pβ-CD hydrogels can be tuned on aspects of mechanical a...
The injectable electroactive and antioxidant hydrogels are prepared from mixing the tetraaniline fun...
Abstract Electrically conductive materials that mimic physical and biological properties of tissues...
Some bacteria can act as catalysts to oxidize (or reduce) organic or inorganic matter with the poten...
The study of cells responding to an electroconductive environment is impeded by the lack of a method...
Cross-linking biomolecules with electroconductive nanostructures through noncovalent interactions ca...
Electroactive hydrogels can be used to influence cell response and maturation by electrical stimulat...
Cardiac tissue engineering is a promising strategy to treat heart failure. Yet, several issues remai...
Electroconductive hydrogels (ECHs) are highly hydrated 3D networks generated through the incorporati...
Electroactive hydrogels can be used to influence cell response and maturation by electrical stimulat...
Electroconductive and injectable hydrogels are attracting increasing attention owing to the needs of...
Tissue engineering aims to combine cells, soluble cues, and biomaterials to repair tissue injuries t...
The topography of the extracellular matrix (ECM) is a major biophysical regulator of cell behavior. ...
Three-dimensional organs and tissues can be constructed using hydrogels as support matrices for cell...
Electroconductive hydrogels are used in a wide range of biomedical applications, including electrode...
Electroconductive hydrogels are used in a wide range of biomedical applications, including electrode...
The injectable electroactive and antioxidant hydrogels are prepared from mixing the tetraaniline fun...
Abstract Electrically conductive materials that mimic physical and biological properties of tissues...
Some bacteria can act as catalysts to oxidize (or reduce) organic or inorganic matter with the poten...
The study of cells responding to an electroconductive environment is impeded by the lack of a method...
Cross-linking biomolecules with electroconductive nanostructures through noncovalent interactions ca...
Electroactive hydrogels can be used to influence cell response and maturation by electrical stimulat...
Cardiac tissue engineering is a promising strategy to treat heart failure. Yet, several issues remai...
Electroconductive hydrogels (ECHs) are highly hydrated 3D networks generated through the incorporati...
Electroactive hydrogels can be used to influence cell response and maturation by electrical stimulat...
Electroconductive and injectable hydrogels are attracting increasing attention owing to the needs of...
Tissue engineering aims to combine cells, soluble cues, and biomaterials to repair tissue injuries t...
The topography of the extracellular matrix (ECM) is a major biophysical regulator of cell behavior. ...
Three-dimensional organs and tissues can be constructed using hydrogels as support matrices for cell...
Electroconductive hydrogels are used in a wide range of biomedical applications, including electrode...
Electroconductive hydrogels are used in a wide range of biomedical applications, including electrode...
The injectable electroactive and antioxidant hydrogels are prepared from mixing the tetraaniline fun...
Abstract Electrically conductive materials that mimic physical and biological properties of tissues...
Some bacteria can act as catalysts to oxidize (or reduce) organic or inorganic matter with the poten...