Challenges in drug development of neurological diseases remain mainly ascribed to the blood-brain barrier (BBB). Despite the valuable contribution of animal models to drug discovery, it remains difficult to conduct mechanistic studies on the barrier function and interactions with drugs at molecular and cellular levels. Here we present a microphysiological platform that recapitulates the key structure and function of the human BBB and enables 3D mapping of nanoparticle distributions in the vascular and perivascular regions. We demonstrate on-chip mimicry of the BBB structure and function by cellular interactions, key gene expressions, low permeability, and 3D astrocytic network with reduced reactive gliosis and polarized aquaporin-4 (AQP4) d...
Therapies directed toward the central nervous system remain difficult to translate into improved cli...
A preclinical blood-brain barrier (BBB) model is important for the study of fundamental transport me...
Protection of the central nervous system (CNS) and cerebral homeostasis depend upon the blood–brain ...
The blood-brain barrier (BBB) constitute a nearly-impenetrable obstacle that protects from pathogens...
The blood-brain barrier (BBB) regulates molecular trafficking, protects against pathogens, and preve...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
The high selectivity of the human blood-brain barrier (BBB) restricts delivery of many pharmaceutica...
The aim of this study was to develop a three-dimensional (3D) model of the human blood-brain barrier...
The possibility of nanoparticle (NP) uptake to the human central nervous system is a major concern. ...
The blood-brain barrier (BBB) is a neurobiological frontier that isolates brain tissues from the blo...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
Protection of the central nervous system (CNS) and cerebral homeostasis depend upon the blood–brain ...
Protection of the central nervous system (CNS) and cerebral homeostasis depend upon the blood–brain ...
Therapies directed toward the central nervous system remain difficult to translate into improved cli...
A preclinical blood-brain barrier (BBB) model is important for the study of fundamental transport me...
Protection of the central nervous system (CNS) and cerebral homeostasis depend upon the blood–brain ...
The blood-brain barrier (BBB) constitute a nearly-impenetrable obstacle that protects from pathogens...
The blood-brain barrier (BBB) regulates molecular trafficking, protects against pathogens, and preve...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
The high selectivity of the human blood-brain barrier (BBB) restricts delivery of many pharmaceutica...
The aim of this study was to develop a three-dimensional (3D) model of the human blood-brain barrier...
The possibility of nanoparticle (NP) uptake to the human central nervous system is a major concern. ...
The blood-brain barrier (BBB) is a neurobiological frontier that isolates brain tissues from the blo...
The blood–brain barrier (BBB) is an active and complex diffusion barrier that separates the circulat...
Protection of the central nervous system (CNS) and cerebral homeostasis depend upon the blood–brain ...
Protection of the central nervous system (CNS) and cerebral homeostasis depend upon the blood–brain ...
Therapies directed toward the central nervous system remain difficult to translate into improved cli...
A preclinical blood-brain barrier (BBB) model is important for the study of fundamental transport me...
Protection of the central nervous system (CNS) and cerebral homeostasis depend upon the blood–brain ...