AbstractNeuronal signaling in the CNS depends on the microenvironment around synapses and axons. To prevent fluctuations in blood composition affecting the interstitial fluid and CSF, two barriers, the blood–brain barrier (BBB) and blood–CSF barrier (BCSFB), are interposed between the blood and the brain/CSF compartment. Brain capillary endothelial cells (ECs) constitute the BBB whereas choroid plexus epithelial (CPE) cells form the BCSFB. The anatomical basis of these barriers is located at the level of an intercellular junctional complex that impedes paracellular diffusion. Tight and adherens junctions are known as the principal constituents of this junctional complex. Transmembrane connexins (Cxs) are the prime building blocks of plasma ...
The central nervous system (CNS) is tightly sealed from the changeable milieu of blood by the blood-...
1. The blood–brain barrier is essential for the maintenance and regulation of the neural microenviro...
Neural signalling within the central nervous system (CNS) requires a highly controlled microenvironm...
AbstractNeuronal signaling in the CNS depends on the microenvironment around synapses and axons. To ...
Unique intercellular junctional complexes between the central nervous system (CNS) microvascular end...
Neuronal signaling together with synapse activity in the central nervous system requires a precisely...
Neuronal survival, electrical signaling and synaptic activity require a well-balanced micro-environm...
Efficient neuronal signaling in the central nervous system strictly depends on a well-balanced micro...
Efficient neuronal signaling in the central nervous system strictly depends on a well-balanced micro...
International audienceABSTRACT: The Blood--brain barrier (BBB), present at the level of the endothel...
International audienceABSTRACT: The Blood--brain barrier (BBB), present at the level of the endothel...
International audienceABSTRACT: The Blood--brain barrier (BBB), present at the level of the endothel...
Homeostasis within the central nervous system (CNS) is a prerequisite to elicit proper neuronal func...
International audienceIn the central nervous system (CNS) complex endothelial tight junctions (TJs) ...
AbstractBrain endothelial cells are unique among endothelial cells in that they express apical junct...
The central nervous system (CNS) is tightly sealed from the changeable milieu of blood by the blood-...
1. The blood–brain barrier is essential for the maintenance and regulation of the neural microenviro...
Neural signalling within the central nervous system (CNS) requires a highly controlled microenvironm...
AbstractNeuronal signaling in the CNS depends on the microenvironment around synapses and axons. To ...
Unique intercellular junctional complexes between the central nervous system (CNS) microvascular end...
Neuronal signaling together with synapse activity in the central nervous system requires a precisely...
Neuronal survival, electrical signaling and synaptic activity require a well-balanced micro-environm...
Efficient neuronal signaling in the central nervous system strictly depends on a well-balanced micro...
Efficient neuronal signaling in the central nervous system strictly depends on a well-balanced micro...
International audienceABSTRACT: The Blood--brain barrier (BBB), present at the level of the endothel...
International audienceABSTRACT: The Blood--brain barrier (BBB), present at the level of the endothel...
International audienceABSTRACT: The Blood--brain barrier (BBB), present at the level of the endothel...
Homeostasis within the central nervous system (CNS) is a prerequisite to elicit proper neuronal func...
International audienceIn the central nervous system (CNS) complex endothelial tight junctions (TJs) ...
AbstractBrain endothelial cells are unique among endothelial cells in that they express apical junct...
The central nervous system (CNS) is tightly sealed from the changeable milieu of blood by the blood-...
1. The blood–brain barrier is essential for the maintenance and regulation of the neural microenviro...
Neural signalling within the central nervous system (CNS) requires a highly controlled microenvironm...