• Fredrik Bajers Vej 3, B, 2-203

    9220 Aalborg Ø

    Denmark

  • Denmark

20052019
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Fingerprint Dive into the research topics where Pablo Pennisi is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Medicine & Life Sciences

Stem Cells
Tissue Engineering
Diamond
Boron
Wound Healing
Biocompatible Materials
Regenerative Medicine
Electrodes
Extracellular Matrix
Adipose Tissue
Polymers
Biofouling
Phenotype
Focal Adhesion Protein-Tyrosine Kinases
Hypospadias
Hydrogels
Keratinocytes
Pigmentation
Fibroblasts
Urethra
Adsorption
Smooth Muscle
Epithelial Cells
Wounds and Injuries
Therapeutics
Blood Platelets
Quality of Life
Proteins
Pharmaceutical Preparations
Fibronectins
Neoplasms
Dynamins
Cell Culture Techniques
Growth
Curcumin
Ceramics
Smooth Muscle Myosins
Oxygen
Smooth Muscle Myocytes
Myoblasts
Cell- and Tissue-Based Therapy
Recovery of Function
Calcium
Emulsions
Cell Nucleus
Myosin Heavy Chains
Ultrasonics
Serum

Chemical Compounds

Stem cells
Diamond films
Boron
Diamond
Biocompatible Materials
Tissue
Hydrogels
Scaffolds
Tissue engineering
Bearings (structural)
Fibroblasts
Electrodes
Muscle
Scaffolds (biology)
Hydrogel
Adhesion
Focal Adhesion Protein-Tyrosine Kinases
Methacrylates
Polymers
Fabrication
Gelatin
Topography
Cells
Chemical activation
Doping (additives)
Adsorption
Surface roughness
Tensile strain
Fibronectins
Electric properties
Biomolecules
Bionics
Functional polymers
Proteins
Oxygen
Actins
Cell culture
Cartilage
Coatings
Assays
Mechanical properties
Myosin Heavy Chains
Charge injection
Nanostructured materials
Grafts

Engineering & Materials Science

Stem cells
Tissue
Biomaterials
Tissue engineering
Hydrogels
Boron
Bearings (structural)
Adhesion
Fibroblasts
Biofouling
Muscle
Scaffolds
Titanium nitride
Diamond films
Scaffolds (biology)
Diamonds
Topography
Electrodes
Proteins
Chemical activation
Polymers
Doping (additives)
Adsorption
Surface roughness
Cells
Tensile strain
Functional polymers
Electrochemical properties
Oxygen
Assays
Grafts
Bionics