
Astrocytes are abundant glial cells that tile the entire central nervous system and mediate well-established functions for neurons, blood vessels, and other glia. These ubiquitous cells display intracellular Ca(2+) signals, which have been intensely studied for 25 years. Recently, the use of improved methods has unearthed the panoply of astrocyte Ca(2+) signals and a variable landscape of basal Ca(2+) levels. In vivo studies have started to reveal the settings under which astrocytes display behaviorally relevant Ca(2+) signaling. Studies in mice have emphasized how astrocyte Ca(2+) signaling is altered in distinct neurodegenerative diseases. Progress in the past few years, fueled by methodological advances, has thus reignited interest in astrocyte Ca(2+) signaling for brain function and dysfunction.
Recombinant Fusion Proteins, Green Fluorescent Proteins, Gene Expression, GCaMP, Mice, Transgenic, Medical and Health Sciences, Transgenic, Mice, astrocyte, Alzheimer Disease, Fluorescence Resonance Energy Transfer, Animals, Humans, Calcium Signaling, Fluorescent Dyes, Neurons, calcium, Animal, Calcium-Binding Proteins, Neurosciences, imaging, Brain, AAV, Biological Sciences, Brain Disorders, Disease Models, Animal, Biochemistry and cell biology, Astrocytes, Neurological, Disease Models, Calcium, Biochemistry and Cell Biology, Developmental Biology
Recombinant Fusion Proteins, Green Fluorescent Proteins, Gene Expression, GCaMP, Mice, Transgenic, Medical and Health Sciences, Transgenic, Mice, astrocyte, Alzheimer Disease, Fluorescence Resonance Energy Transfer, Animals, Humans, Calcium Signaling, Fluorescent Dyes, Neurons, calcium, Animal, Calcium-Binding Proteins, Neurosciences, imaging, Brain, AAV, Biological Sciences, Brain Disorders, Disease Models, Animal, Biochemistry and cell biology, Astrocytes, Neurological, Disease Models, Calcium, Biochemistry and Cell Biology, Developmental Biology
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