Keyphrases
Tissue Engineering
100%
Electrospun
100%
Diclofenac Sodium
100%
Poly(d,l-lactide-co-glycolide)
100%
Drug Release
40%
Nanofibers
40%
Tissue Repair
40%
UV-VIS Spectroscopy
40%
MC3T3
40%
Scanning Electron Microscopy
20%
Acetone
20%
Porous Structure
20%
Degradation Process
20%
Cell-based
20%
Release Rate
20%
Material Degradation
20%
Electrospinning
20%
Nanotechnology
20%
Natural Fibers
20%
Polymer Nanofibers
20%
Materials Science
20%
Nanomats
20%
Engineering Research
20%
Bio-absorbable
20%
Nanofibrous
20%
Mouse Embryonic Fibroblasts
20%
Cell Attachment
20%
Nanoscale Structure
20%
Drug Particles
20%
Fluorescent Microscopy
20%
Scanning Electron Microscopy Analysis
20%
Dimethylformamide
20%
Porous Nanostructures
20%
Advanced Tissue Engineering
20%
Nanofibrous Materials
20%
Tissue Regeneration
20%
Background Adaptation
20%
Release Kinetics
20%
Biomaterial Properties
20%
INIS
engineering
100%
tissues
100%
surgery
100%
fabrication
100%
sodium
100%
nanofibers
60%
drugs
60%
repair
40%
scanning electron microscopy
40%
nanostructures
40%
spectroscopy
40%
porous materials
40%
solutions
20%
mixtures
20%
fibers
20%
thickness
20%
polymers
20%
morphology
20%
kinetics
20%
peaks
20%
mice
20%
particles
20%
evaluation
20%
regeneration
20%
fluorescence
20%
acetone
20%
microscopy
20%
biological materials
20%
fibroblasts
20%
nanotechnology
20%
dimethylformamide
20%
Engineering
Electrospun
100%
Nanofibers
100%
Glycolide
100%
Tissue Regeneration
100%
Release Drug
66%
Release Rate
33%
Degradation Process
33%
Porous Structure
33%
Materials Degradation
33%
Engineering Research
33%
Electrospinning
33%
Mouse Fibroblast
33%
Nanomaterial
33%
Natural Fibre
33%
Pharmacology, Toxicology and Pharmaceutical Science
Diclofenac
100%
Nanofiber
60%
Drug Release
40%
Scanning Electron Microscopy
40%
Tissue Repair
40%
Nanomaterial
40%
Electron Microscopy
20%
Biomaterial
20%
N,n Dimethylformamide
20%
Acetone
20%
Material Science
Sodium
100%
Nanofiber
60%
Scanning Electron Microscopy
40%
UV-Visible Spectroscopy
40%
Nanostructure
20%
Electrospinning
20%
Natural Fiber
20%
Materials Degradation
20%
Electron Microscopy
20%
Fibroblast
20%
Chemical Engineering
Dimethylformamide
100%
Nanostructure
100%