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Keyphrases
Type I Collagen
100%
Cell Culture Platform
100%
Supported Lipid Bilayer
100%
1,3-Dioleoyl-2-palmitoylglycerol
100%
Collagen
100%
Lipid Bilayer
60%
Collagen Molecule
40%
Platform-Based
20%
Fluorescence Recovery
20%
Quartz Crystal Microbalance with Dissipation (QCM-D)
20%
Cell Culture
20%
Biomimetic
20%
Extracellular Matrix Protein 1 (ECM1)
20%
Atomic Force Microscopy
20%
Lipids
20%
Effective Approach
20%
Silica
20%
Adlayer
20%
Film Thickness
20%
Phospholipids
20%
Cell Membrane
20%
Carboxylic Acid Functionalized
20%
Growth Behavior
20%
Form-stable
20%
In Films
20%
Chemical Approach
20%
Lipid-based Systems
20%
Normal Growth
20%
Lipid Vesicles
20%
Conjugation Process
20%
Binding Kinetics
20%
Matrix Cell
20%
Smooth muscle Cells
20%
Biomimetic Platforms
20%
Amide Linkage
20%
Viscoelasticity
20%
Fibril Structure
20%
Lipid Mobility
20%
Lipid-drug Conjugate
20%
Biomimetic Models
20%
Biochemistry, Genetics and Molecular Biology
Lipid Bilayer
100%
Cell Culture
100%
Lipid
66%
Type I Collagen
66%
Phosphorylcholine
50%
Biomimetics
50%
Phospholipid Bilayer
33%
Cell Membrane
16%
Conjugate
16%
Gene Linkage
16%
Lipid Vesicle
16%
Atomic Force Microscopy
16%
Binding Kinetics
16%
Fluorescence Recovery after Photobleaching
16%
Phospholipid
16%
Viscoelasticity
16%
Chemistry
1-Oleoyl-2-Palmitoyl-Sn-Glycero-3-Phosphocholine
100%
Phospholipid
100%
Biomimetics
100%
Sn-Glycero-3-Phosphoethanolamine
66%
Atomic Force Microscopy
33%
Adlayer
33%
Carboxamide
33%
Fluorescence Recovery after Photobleaching
33%
Carboxylic Acid
33%
Viscoelasticity
33%
Engineering
Biomimetics
100%
Supported Lipid Bilayer
100%
Lipid Bilayer
100%
Atomic Force Microscopy
33%
Effective Approach
33%
Growth Behavior
33%
Quartz Crystal Microbalance
33%
Matrix Component
33%
Amide Linkage
33%
Viscoelasticity
33%
Material Science
Lipid Bilayer
100%
Cell Membrane
16%
Film Thickness
16%
Viscoelasticity
16%
Atomic Force Microscopy
16%