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Targeting Neuroinflammation to Treat Alzheimer’s Disease
A. Ardura-Fabregat
, E. W.G.M. Boddeke
, A. Boza-Serrano
,
S. Brioschi
, S. Castro-Gomez
, K. Ceyzériat
, C. Dansokho
, T. Dierkes
, G. Gelders
, Michael T. Heneka
, L. Hoeijmakers
, A. Hoffmann
, L. Iaccarino
, S. Jahnert
, K. Kuhbandner
, G. Landreth
, N. Lonnemann
, P. A. Löschmann
, R. M. McManus
, A. Paulus
K. Reemst, J. M. Sanchez-Caro, A. Tiberi, A. Van der Perren, A. Vautheny, C. Venegas, A. Webers, P. Weydt, T. S. Wijasa, X. Xiang, Y. Yang
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Division of Immunobiology
Research output
:
Contribution to journal
›
Review article
›
peer-review
209
Scopus citations
Overview
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Keyphrases
Alzheimer's Disease
100%
Neuroinflammation
100%
Neurodegeneration
25%
Therapeutic Target
25%
Cell Death
25%
Inflammation
25%
Disease-related
25%
Inflammatory Pathways
25%
Amyloid beta
25%
Innate Immune Cells
25%
Heat Shock Proteins
25%
Beneficial Effects
25%
Modifying Factors
25%
Intraneuronal
25%
Future Therapeutics
25%
Pattern Recognition
25%
Neuronal Function
25%
Pathomechanism
25%
Anti-neuroinflammation
25%
Immune Mediators
25%
Chromogranin A
25%
Immune Process
25%
Molecular Player
25%
Danger-associated Molecular Patterns
25%
Disease Component
25%
Summer School
25%
Neurofibril
25%
β-amyloid Peptide
25%
Biochemistry, Genetics and Molecular Biology
Amyloid Beta
100%
Neuroinflammation
100%
Genetics
50%
Mediator
50%
Neurofilament
50%
Cell Death
50%
Tau
50%
Heat Shock Protein
50%
Clinical Study
50%
Immunocompetent Cell
50%
Pattern Recognition
50%
Medicine and Dentistry
Neuroinflammation
100%
Alzheimer's Disease
100%
Neurodegeneration
25%
Tau
25%
Immunocompetent Cell
25%
Cell Death
25%
Clinical Study
25%
Mediator
25%
Cell Signaling Pathway
25%
Pattern Recognition
25%
Amyloid Beta
25%
Chromogranin
25%
Neurofilament
25%
Heat Shock Protein
25%
Amyloid Beta Protein
25%
Diseases
25%
Neuroscience
Alzheimer's Disease
100%
Neurodegeneration
25%
Neurofilament
25%
Cell Death
25%
Beta Amyloid
25%
Heat Shock Protein
25%
Amyloid Beta Protein
25%
Chromogranin
25%
Pattern Recognition
25%