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Ca2+ related mechanisms of cellular dysfunction in neurodegeneration
Giulia Dematteis
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Keyphrases
Ca2+
100%
Astrocytes
100%
Neurodegeneration
100%
Cellular Dysfunction
100%
Alzheimer's Disease
83%
Calcineurin
83%
Mitochondria
50%
ER-mitochondria Contact Sites
50%
Calcium Transfer
50%
Astroglial
33%
Disease-related
33%
Mitochondrial Calcium Uptake
33%
Protective Effect
16%
Pathological Conditions
16%
Linker
16%
Therapeutic Target
16%
Pathophysiology
16%
Pathological Progression
16%
Dishonesty
16%
Plaque Deposition
16%
EIF2
16%
Brain Function
16%
Protein Synthesis
16%
PhD Project
16%
Proteasomal Degradation
16%
Intracellular Messenger
16%
Alzheimer's Disease Model
16%
Cause-effect Relationship
16%
Mitochondrial Bioenergetics
16%
Tau Hyperphosphorylation
16%
Memory Impairment
16%
Mitochondrial Calcium
16%
Astrocyte Dysfunction
16%
Mitochondrial Proteostasis
16%
Medicine and Dentistry
Calcium Ion
100%
Astrocyte
100%
Neurodegeneration
100%
Mitochondrion
85%
Alzheimer's Disease
85%
Isotopes of Calcium
71%
Calcineurin
71%
Calcium Transport
28%
Doctor of Philosophy
28%
Tau
14%
Pathophysiology
14%
Initiation Factor 2
14%
Protein Synthesis
14%
Brain Function
14%
Protein Homeostasis
14%
Hyperphosphorylation
14%
Memory Disorder
14%
Neuroscience
Astrocyte
100%
Neurodegeneration
100%
Mitochondrion
85%
Alzheimer's Disease
85%
Calcineurin
71%
Calcium Transport
28%
Brain Function
14%
Protein Biosynthesis
14%
Memory Disorder
14%
Hyperphosphorylation
14%
Biochemistry, Genetics and Molecular Biology
Astrocyte
100%
Mitochondrion
85%
Calcineurin
71%
Calcium Transport
28%
Tau
14%
Protein Homeostasis
14%
Mouse Model
14%
Protein Biosynthesis
14%
Brain Function
14%
Bioenergy
14%
Hyperphosphorylation
14%