Electroactive polyurethane/siloxane derived from castor oil as a versatile cardiac patch, part I: Synthesis, characterization, and myoblast proliferation and differentiation.

scientific article published on 5 November 2015

Electroactive polyurethane/siloxane derived from castor oil as a versatile cardiac patch, part I: Synthesis, characterization, and myoblast proliferation and differentiation. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/JBM.A.35612
P698PubMed publication ID26540140

P50authorHamid YeganehQ51092960
Nicolò SalvaraniQ62081825
Michele MiragoliQ73740419
Gianluigi CondorelliQ37839035
P2093author name stringElisa Di Pasquale
Reza Gharibi
Nafiseh Baheiraei
P2860cites workContractile cardiac grafts using a novel nanofibrous meshQ47953144
Optimizing PANi doped electroactive substrates as patches for the regeneration of cardiac muscleQ50280451
Electrodeposition of anchored polypyrrole film on microelectrodes and stimulation of cultured cardiac myocytes.Q51094182
Development and characterization of novel electrically conductive PANI-PGS composites for cardiac tissue engineering applications.Q51751955
Comparison between polyurethanes containing castor oil (soft segment) and cancellous bone autograft in the treatment of segmental bone defect induced in rabbits.Q51814948
Poly(lactic–co-glycolic acid): Carbon nanofiber composites for myocardial tissue engineering applicationsQ60141241
Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patchesQ22337395
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Alternating block polyurethanes based on PCL and PEG as potential nerve regeneration materialsQ34647534
Carboxylic acid-functionalized conductive polypyrrole as a bioactive platform for cell adhesionQ36901399
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Biomimetic scaffold combined with electrical stimulation and growth factor promotes tissue engineered cardiac developmentQ37624711
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Synthesis, characterization and antioxidant activity of a novel electroactive and biodegradable polyurethane for cardiac tissue engineering application.Q38950825
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Seeding bioreactor-produced embryonic stem cell-derived cardiomyocytes on different porous, degradable, polyurethane scaffolds reveals the effect of scaffold architecture on cell morphologyQ40003628
Electroactive oligoaniline-containing self-assembled monolayers for tissue engineering applicationsQ40082731
Polyaniline, an electroactive polymer, supports adhesion and proliferation of cardiac myoblastsQ40330188
Electrospinning polyaniline-contained gelatin nanofibers for tissue engineering applicationsQ40340510
Polyurethane films seeded with embryonic stem cell-derived cardiomyocytes for use in cardiac tissue engineering applicationsQ40397222
Preparation of a porous conductive scaffold from aniline pentamer-modified polyurethane/PCL blend for cardiac tissue engineering.Q41234079
Development of electroactive and elastic nanofibers that contain polyaniline and poly(L-lactide-co-epsilon-caprolactone) for the control of cell adhesionQ42814609
Fabrication of Free-Standing, Electrochemically Active, and Biocompatible Graphene Oxide−Polyaniline and Graphene−Polyaniline Hybrid PapersQ42927698
Spatially organized layers of cardiomyocytes on biodegradable polyurethane films for myocardial repair.Q45942280
Facile synthesis of degradable and electrically conductive polysaccharide hydrogelsQ46188813
Synthesis of biodegradable and electroactive multiblock polylactide and aniline pentamer copolymer for tissue engineering applicationsQ46764296
Synthesis and characterization of electroactive and biodegradable ABA block copolymer of polylactide and aniline pentamerQ46987432
P433issue3
P921main subjectmyoblastQ1956694
P304page(s)775-787
P577publication date2015-12-21
P1433published inJournal of Biomedical Materials Research Part AQ15749234
P1476titleElectroactive polyurethane/siloxane derived from castor oil as a versatile cardiac patch, part I: Synthesis, characterization, and myoblast proliferation and differentiation
P478volume104

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cites work (P2860)
Q47129515A Novel Electroactive Agarose-Aniline Pentamer Platform as a Potential Candidate for Neural Tissue Engineering.
Q54945960Current Trends in Biomaterial Utilization for Cardiopulmonary System Regeneration.
Q38798565Electroactive polyurethane/siloxane derived from castor oil as a versatile cardiac patch, part II: HL-1 cytocompatibility and electrical characterizations
Q58562094Recent advances and challenges on application of tissue engineering for treatment of congenital heart disease

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