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Decoding complement: A multi-technique approach to complex interactions
Jürgen Strasser
Research Center Linz
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Doctoral Thesis
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Dive into the research topics of 'Decoding complement: A multi-technique approach to complex interactions'. Together they form a unique fingerprint.
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Keyphrases
Oligomerization
100%
Complex Interactions
100%
Fc-Fc Interactions
100%
Multi-methodological Approach
100%
Monovalent Cations
66%
Single-molecule Force Spectroscopy
66%
Hexamer
66%
IgG Hexamer
66%
Quartz Crystal Microbalance with Dissipation (QCM-D)
66%
Dissociation
33%
Small Molecules
33%
Physiological Condition
33%
Doctoral Thesis
33%
Epitope
33%
Human Disease
33%
High-speed Atomic Force Microscopy (HS-AFM)
33%
Complement System
33%
Multivalent
33%
Molecular Events
33%
Complement Activation
33%
Antigen Recognition
33%
Classical Complement Activation
33%
IgE Binding
33%
Dynamic Interaction
33%
High-speed AFM
33%
Bispecific
33%
Classical Pathway
33%
Immunoglobulin IgG
33%
Nucleation Site
33%
Kinetic Rate
33%
Fc Region
33%
Structural Stability
33%
Opsonization
33%
Constant Energy
33%
Direct Visualization
33%
Pathogenic Cells
33%
Fundamental Challenges
33%
Interaction Energy
33%
Point mutation
33%
Vital Process
33%
Kinetic Rate Constant
33%
Chemistry
Oligomerization
100%
formation
100%
Atomic Force Microscopy
66%
Spectroscopy
66%
Statistical Ensemble
33%
Epitope
33%
Nucleation
33%
Degradation Rate
33%
Oligomer
33%
antigenic
33%
Immunoglobulin
33%
Immunology and Microbiology
Oligomerization
100%
Complement Activation
66%
Solution and Solubility
66%
Complement System
33%
Epitope
33%
Antigen Recognition
33%
Intravenous Immunoglobulin
33%
Complement Component C1q
33%
Point Mutation
33%
Opsonization
33%
Biochemistry, Genetics and Molecular Biology
Oligomerization
100%
Solution and Solubility
66%
Complement Activation
66%
Small Molecule
33%
Atomic Force Microscopy
33%
Antigen Recognition
33%
Intravenous Immunoglobulin
33%
Point Mutation
33%
Complement System
33%
Opsonization
33%
Material Science
Oligomerization
100%
Nucleation
33%
Epitope
33%
Atomic Force Microscopy
33%
Immunoglobulin
33%