Results 211 to 220 of about 700,468 (343)
This study describes the fabrication of arrays of luminal tissue constructs for 3D luminal tissue modeling. An oil or media‐filled reservoir between constructs serves as a liquid barrier or bridge to regulate communication between lumens within the array for modeling multi‐tissue interactions in vitro. Abstract Cell‐lined luminal structures are crucial
Mouhita Humayun +9 more
wiley +1 more source
Histone and non-histone (de)acetylation impact on the blood-brain barrier. [PDF]
Melo M +3 more
europepmc +1 more source
Hydrogel Confinement Strategies for 3D Cell Culture in Microfluidic Systems
Hydrogel confinement structures are key to organizing 3D cell cultures in microfluidic devices. This review classifies five structural strategies (micropillar, phaseguide, porous membrane, stepped‐height, and support‐free) and examines their trade‐offs alongside fabrication methods.
Soohyun Kim, Min Seok Lee, Sung Kyun Lee
wiley +1 more source
Both isoforms of Drosophila ApoLpp (ApoB) cross the blood-brain barrier in adults. [PDF]
Stinchfield MJ +3 more
europepmc +1 more source
Blood-brain-barrier spheroids as an in vitro screening platform for brain-penetrating agents
David Calligaris +8 more
openalex +1 more source
Vascular mural cells protect the adult brain from haemorrhage but do not control the blood-brain barrier in developing zebrafish [PDF]
Oguzhan Baltaci +10 more
openalex +1 more source
This review explores the integration of microfluidic technology with organoid systems as an innovative platform for studying menopausea complex multi‐organ condition. By enabling precise simulation of inter‐organ communication and hormone responses, microfluidic organoids offer a physiologically relevant model for investigating menopausal syndrome and ...
Qianyi Zhang +4 more
wiley +1 more source
The duality of the BBB: breaking the myth of the blood-brain barrier breakdown. [PDF]
Calon F.
europepmc +1 more source
Modeling the blood–brain tumor barrier is challenging due to complex interactions between brain microvasculature and glioma cells. We present two‐photon polymerized 3D micro‐porous capillary‐like structures that support endothelial alignment, cytoskeletal organization, and pericyte‐endothelial‐glioma tri‐cultures.
Nastaran Barin +9 more
wiley +1 more source

