SummaryAstrocytes are critically important for neuronal circuit assembly and function. Mammalian protoplasmic astrocytes develop a dense ramified meshwork of cellular processes to form intimate contacts with neuronal cell bodies, neurites, and synapses. This close neuron-glia morphological relationship is essential for astrocyte function, but it remains unclear how astrocytes establish their intricate morphology, organize spatial domains, and associate with neurons and synapses in vivo. Here we characterize a Drosophila glial subtype that shows striking morphological and functional similarities to mammalian astrocytes. We demonstrate that the Fibroblast growth factor (FGF) receptor Heartless autonomously controls astrocyte membrane growth, ...
Understanding neuronal function at the local and circuit level requires understanding astrocyte func...
Most glial functions depend on establishing intimate morphological relationships with neurons. Signi...
The glutamate transporter 1 (GLT1) is upregulated during astrocyte development and maturation in viv...
Astrocytes are critically important for neuronal circuit assembly and function. Mammalian protoplasm...
SummaryAstrocytes are critically important for neuronal circuit assembly and function. Mammalian pro...
The highly ramified processes of astrocytes enable cellular interactions and extracellular homeostas...
Fibroblast growth factor (FGF) signalling is known to be essential for various cellular functions in...
Developmental neural activity is a common feature of neural circuit assembly. Although glia have est...
Astrocytes are the most abundant non-neuronal cells in vertebrate brains. Although Drosophila melano...
How astrocytes grow and integrate into neural circuits remains poorly defined. Zebrafish are well su...
Astrocytes are crucial in the formation, fine-tuning, function and plasticity of neural circuits in ...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
Astrocytes are the most abundant cell type in the mammalian brain. Interest in astrocyte function ha...
Molecular genetic approaches in small model organisms like Drosophila have helped to elucidate funda...
Glial cells comprise 90% of the human brain.1 Glia are divided into two subtypes, the microglia whic...
Understanding neuronal function at the local and circuit level requires understanding astrocyte func...
Most glial functions depend on establishing intimate morphological relationships with neurons. Signi...
The glutamate transporter 1 (GLT1) is upregulated during astrocyte development and maturation in viv...
Astrocytes are critically important for neuronal circuit assembly and function. Mammalian protoplasm...
SummaryAstrocytes are critically important for neuronal circuit assembly and function. Mammalian pro...
The highly ramified processes of astrocytes enable cellular interactions and extracellular homeostas...
Fibroblast growth factor (FGF) signalling is known to be essential for various cellular functions in...
Developmental neural activity is a common feature of neural circuit assembly. Although glia have est...
Astrocytes are the most abundant non-neuronal cells in vertebrate brains. Although Drosophila melano...
How astrocytes grow and integrate into neural circuits remains poorly defined. Zebrafish are well su...
Astrocytes are crucial in the formation, fine-tuning, function and plasticity of neural circuits in ...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
Astrocytes are the most abundant cell type in the mammalian brain. Interest in astrocyte function ha...
Molecular genetic approaches in small model organisms like Drosophila have helped to elucidate funda...
Glial cells comprise 90% of the human brain.1 Glia are divided into two subtypes, the microglia whic...
Understanding neuronal function at the local and circuit level requires understanding astrocyte func...
Most glial functions depend on establishing intimate morphological relationships with neurons. Signi...
The glutamate transporter 1 (GLT1) is upregulated during astrocyte development and maturation in viv...