<div><p>Brain and vascular cells form a functionally integrated signalling network that is known as the neurovascular unit (NVU). The signalling (autocrine, paracrine and juxtacrine) between different elements of this unit, especially in humans, is difficult to disentangle <i>in vivo</i>. Developing representative <i>in vitro</i> models is therefore essential to better understand the cellular interactions that govern the neurovascular environment. We here describe a novel approach to assay these cellular interactions by combining a human adult cerebral microvascular endothelial cell line (hCMEC/D3) with a fetal ganglionic eminence-derived neural stem cell (hNSC) line. These cell lines provide abundant homogeneous populations of cells to pro...
In the stem cell niche, neural stem cells (NSCs) are in close contact with the specialized blood-bra...
International audienceOBJECTIVE: The vascular system is adapted to specific functions in different t...
At the gliovascular interface, reciprocal inductive influences between brain microvascular endotheli...
Brain and vascular cells form a functionally integrated signalling network that is known as the neur...
International audienceBrain and vascular cells form a functionally integrated signalling network tha...
Brain and vascular cells form a functionally integrated signalling network that is known as the neur...
Brain and vascular cells form a functionally integrated signalling network that is known as the neur...
Background: Neuronal networks receive and deliver information to regulate bodily functions while the...
Introduction: The neurovascular unit (NVU) – the interaction between the neurons an...
BACKGROUND: Brain microvascular endothelial cells (BMECs) astrocytes, neurons, and pericytes form...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
Background: The blood-brain barrier (BBB) is a specialized layer between blood vessels and tissue in...
The derivation of human brain capillary endothelial cells is of utmost importance for drug discovery...
The blood-brain barrier (BBB) regulates the transport of molecules from the blood into the brain par...
<div><p>The blood brain barrier (BBB) is formed by brain microvascular endothelial cells (BMECs) and...
In the stem cell niche, neural stem cells (NSCs) are in close contact with the specialized blood-bra...
International audienceOBJECTIVE: The vascular system is adapted to specific functions in different t...
At the gliovascular interface, reciprocal inductive influences between brain microvascular endotheli...
Brain and vascular cells form a functionally integrated signalling network that is known as the neur...
International audienceBrain and vascular cells form a functionally integrated signalling network tha...
Brain and vascular cells form a functionally integrated signalling network that is known as the neur...
Brain and vascular cells form a functionally integrated signalling network that is known as the neur...
Background: Neuronal networks receive and deliver information to regulate bodily functions while the...
Introduction: The neurovascular unit (NVU) – the interaction between the neurons an...
BACKGROUND: Brain microvascular endothelial cells (BMECs) astrocytes, neurons, and pericytes form...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
Background: The blood-brain barrier (BBB) is a specialized layer between blood vessels and tissue in...
The derivation of human brain capillary endothelial cells is of utmost importance for drug discovery...
The blood-brain barrier (BBB) regulates the transport of molecules from the blood into the brain par...
<div><p>The blood brain barrier (BBB) is formed by brain microvascular endothelial cells (BMECs) and...
In the stem cell niche, neural stem cells (NSCs) are in close contact with the specialized blood-bra...
International audienceOBJECTIVE: The vascular system is adapted to specific functions in different t...
At the gliovascular interface, reciprocal inductive influences between brain microvascular endotheli...