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Volumn 8, Issue 12, 2016, Pages 6820-6836
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Engineering a multi-biofunctional composite using poly(ethylenimine) decorated graphene oxide for bone tissue regeneration
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Author keywords
[No Author keywords available]
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Indexed keywords
ALKALINITY;
CELL CULTURE;
ESCHERICHIA COLI;
FILLERS;
FRACTURE FIXATION;
GRAPHENE;
PHOSPHATASES;
STEM CELLS;
TISSUE;
TISSUE ENGINEERING;
ALKALINE PHOSPHATASE;
BACTERICIDAL ACTIVITY;
BONE TISSUE REGENERATION;
HUMAN MESENCHYMAL STEM CELLS (HMSCS);
ORTHOPEDIC DEVICES;
OXYGEN-CONTAINING FUNCTIONAL GROUPS;
POLY (EPSILONCAPROLACTONE);
STEM CELL DIFFERENTIATION;
TISSUE REGENERATION;
ACRYLIC ACID RESIN;
ALKALINE PHOSPHATASE;
AMINE;
ANTIINFECTIVE AGENT;
BIOMATERIAL;
CARBOPOL 940;
GRAPHITE;
NANOPARTICLE;
OXIDE;
OXYGEN;
POLYCAPROLACTONE;
POLYESTER;
POLYETHYLENEIMINE;
ADSORPTION;
ADULT;
ATOMIC FORCE MICROSCOPY;
BONE;
BONE DEVELOPMENT;
BONE REGENERATION;
CELL DIFFERENTIATION;
CELL PROLIFERATION;
CELL SURVIVAL;
CHEMISTRY;
CYTOLOGY;
ESCHERICHIA COLI;
HUMAN;
INFRARED SPECTROSCOPY;
MALE;
MESENCHYMAL STROMA CELL;
METABOLISM;
PATHOLOGY;
PROCEDURES;
STEM CELL;
TISSUE ENGINEERING;
TISSUE SCAFFOLD;
WETTABILITY;
ACRYLIC RESINS;
ADSORPTION;
ADULT;
ALKALINE PHOSPHATASE;
AMINES;
ANTI-BACTERIAL AGENTS;
BIOCOMPATIBLE MATERIALS;
BONE AND BONES;
BONE REGENERATION;
CELL DIFFERENTIATION;
CELL PROLIFERATION;
CELL SURVIVAL;
ESCHERICHIA COLI;
GRAPHITE;
HUMANS;
MALE;
MESENCHYMAL STROMAL CELLS;
MICROSCOPY, ATOMIC FORCE;
NANOPARTICLES;
OSTEOGENESIS;
OXIDES;
OXYGEN;
POLYESTERS;
POLYETHYLENEIMINE;
SPECTROSCOPY, FOURIER TRANSFORM INFRARED;
STEM CELLS;
TISSUE ENGINEERING;
TISSUE SCAFFOLDS;
WETTABILITY;
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EID: 84962313652
PISSN: 20403364
EISSN: 20403372
Source Type: Journal
DOI: 10.1039/c5nr06906h Document Type: Article |
Times cited : (112)
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References (80)
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