Tissue engineering of electrically responsive tissues using polyaniline based polymers: a review.
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Evaluation of in vitro and in vivo biocompatibility of a myo-inositol hexakisphosphate gelated polyaniline hydrogel in a rat model.Cotton Fabric Coated with Conducting Polymers and its Application in Monitoring of Carnivorous Plant ResponseThe applications of conductive nanomaterials in the biomedical field.Scaffold and scaffold-free self-assembled systems in regenerative medicine.Adhesion, Proliferation and Migration of NIH/3T3 Cells on Modified Polyaniline SurfacesDevelopment of novel electrically conductive scaffold based on hyperbranched polyester and polythiophene for tissue engineering applications.Mechanistic contribution of electroconductive hydroxyapatite-titanium disilicide composite on the alignment and proliferation of cells.Highly porous scaffolds of PEDOT:PSS for bone tissue engineering.A Novel Electroactive Agarose-Aniline Pentamer Platform as a Potential Candidate for Neural Tissue Engineering.Structural behavior of competitive temperature and pH-responsive tethered polymer layers.Electrospun aniline-tetramer-co-polycaprolactone fibres for conductive, biodegradable scaffolds.Multiwall carbon nanotubes/polycaprolactone scaffolds seeded with human dental pulp stem cells for bone tissue regeneration.Rational Design of a Conductive Collagen Heart Patch.3D Printing of Aniline Tetramer-Grafted-Polyethylenimine and Pluronic F127 Composites for Electroactive Scaffolds.Inflammation-sensitive in situ smart scaffolding for regenerative medicine.Pigmented Silk Nanofibrous Composite for Skeletal Muscle Tissue Engineering.Instructive Conductive 3D Silk Foam-Based Bone Tissue Scaffolds Enable Electrical Stimulation of Stem Cells for Enhanced Osteogenic Differentiation.Field responsive materials: photo-, electro-, magnetic- and ultrasound-sensitive polymers“Smart” Polymers: Physicochemical Characteristics and Applications in Bio-Separation StrategiesElectrical stimulation of human mesenchymal stem cells on biomineralized conducting polymers enhances their differentiation towards osteogenic outcomesOn the cytotoxicity of poly(4-aminodiphenylaniline) powders: Effect of acid dopant type and sample posttreatmentConductivity, impurity profile, and cytotoxicity of solvent-extracted polyanilineStem cell differentiation on conducting polyanilineA Review of Electrospun Conductive Polyaniline Based Nanofiber Composites and Blends: Processing Features, Applications, and Future Directions
P2860
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P2860
Tissue engineering of electrically responsive tissues using polyaniline based polymers: a review.
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2014 nî lūn-bûn
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2014年学术文章
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name
Tissue engineering of electric ...... line based polymers: a review.
@en
type
label
Tissue engineering of electric ...... line based polymers: a review.
@en
prefLabel
Tissue engineering of electric ...... line based polymers: a review.
@en
P1433
P1476
Tissue engineering of electric ...... line based polymers: a review.
@en
P2093
Ranjana Rai
Taimoor H Qazi
P304
P356
10.1016/J.BIOMATERIALS.2014.07.020
P577
2014-08-10T00:00:00Z