Keyphrases
Extracellular Vesicles
100%
MiR-199a-3p
100%
Cardiac Patch
100%
Three-dimensional-printed
100%
Engineered Extracellular Vesicles
100%
Bioink
63%
Neonatal Rat Cardiomyocytes
27%
Cell Viability
18%
Electroporation
18%
Metabolic Activity
18%
Three-dimensional (3D)
18%
Cryogenic Electron Microscopy
18%
Bioprinting
18%
CTnT
18%
Western Blot Analysis
9%
Cellular Uptake
9%
Incubation
9%
Alginate
9%
Expression Level
9%
Complex Structure
9%
Apoptosis
9%
Apoptotic Cells
9%
Cell Survival
9%
THP1
9%
Ki-67
9%
Applied Voltage
9%
Caspase-3 Activation
9%
Activity Level
9%
Immunostaining
9%
Cell Apoptosis
9%
Shear Force
9%
Activated Macrophages
9%
Force Applied
9%
Gelatin
9%
Cell Ratio
9%
Survival Factor
9%
Prolonged Effect
9%
Proliferation Marker Ki-67
9%
Nanoparticle Tracking Analysis
9%
Vesicle Size
9%
Cell Cycle Re-entry
9%
Loading Efficiency
9%
3D Bioprinting
9%
Aurora Kinase A (AURKA)
9%
Extrusion-based
9%
Aurora B
9%
Neuroscience
Electroporation
100%
Cell Viability
100%
In Vivo
50%
Macrophage
50%
Caspase 3
50%
Western Blot
50%
Cell Survival
50%
Cell Cycle
50%
Immunohistochemistry
50%
Alginic Acid
50%
Gelatin
50%
Cryo-Electron Microscopy
50%
Aurora B Kinase
50%
Material Science
Monolayers
100%
Hydrogel
100%
Nanoparticle
100%
Macrophage
100%
Cryo-Electron Microscopy
100%
3D Bioprinting
100%
Immunology and Microbiology
Cardiac Muscle Cell
100%
Cell Viability
66%
Pulse Rate
66%
Electroporation
66%
Macrophage
33%
Caspase
33%
Cell Survival
33%
Cell Cycle
33%
Western Blot
33%
Electric Potential
33%
Cryo-Electron Microscopy
33%
Immunostaining
33%
Survival Factor
33%
Pharmacology, Toxicology and Pharmaceutical Science
Cell Viability
100%
Nanoparticle
50%
Western Blot
50%
Caspase 3
50%
Alginic Acid
50%
Gelatin
50%
Survival Factor
50%
Cryo-Electron Microscopy
50%
Reentry Arrhythmia
50%
Aurora B Kinase
50%
Engineering
Cardiac Patch
100%
Cardiomyocytes
33%
Metabolic Activity
22%
Engineering
11%
Hydrogel
11%
Complex Structure
11%
Nanoparticle
11%
Monolayer
11%
Applied Voltage
11%
Alginate
11%
Shear Force
11%
Cell Recycle
11%
Loading Efficiency
11%
Activated Macrophage
11%