Epithelia and endothelia delineate tissue compartments and control their environments by regulating the passage of ions and solutes. This barrier function is essential for the development and maintenance of multicellular organisms, and its dysfunction is associated with numerous human diseases. Recent advances in biomaterials and microfabrication technologies have evolved in vitro approaches for modelling biological barriers. Current microphysiological systems have become more efficient and reliable in mimicking the cell microenvironment. Additionally, methods for the quantification of barrier permeability have long provided significant insight into their underlying mechanisms. In this review, we outline the current techniques to quantify t...
Microphysiological systems, also known as organ-on-a-chip systems, possess significant potential as ...
The vasculature in the brain is formed by brain microvascular endothelial cells (BMECs) surrounded b...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Abstract Epithelia and endothelia delineate tissue compartments and control their environments by re...
In multicellular organisms epithelial and endothelial cells form selective permeable interfaces betw...
Tissue barriers play a crucial role in human physiology by establishing tissue compartmentalization ...
Disruption of tissue barriers formed by cells is an integral part of the pathophysiology of many dis...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
AbstractOrgan-on-a-chip devices have gained attention in the field of in vitro modeling due to their...
Biological barriers are indispensable for the integrity and function of many vertebrate organs. The ...
Epithelial tissue serves as an interface between biological compartments. Many in vitro epithelial c...
The interconnection of different tissue-tissue interfaces may extend organ-on-chips to a new generat...
Epithelia cover inner and outer surfaces of the body of eumetazoic animals.1-3 Thus, epithelia repre...
The brain capillary endothelium is highly regulatory, maintaining the chemical stability of the brai...
Endothelial and epithelial cellular barriers play a vital role in the selective transport of solutes...
Microphysiological systems, also known as organ-on-a-chip systems, possess significant potential as ...
The vasculature in the brain is formed by brain microvascular endothelial cells (BMECs) surrounded b...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...
Abstract Epithelia and endothelia delineate tissue compartments and control their environments by re...
In multicellular organisms epithelial and endothelial cells form selective permeable interfaces betw...
Tissue barriers play a crucial role in human physiology by establishing tissue compartmentalization ...
Disruption of tissue barriers formed by cells is an integral part of the pathophysiology of many dis...
Organ-on-a-chip devices have gained attention in the field of in vitro modeling due to their superio...
AbstractOrgan-on-a-chip devices have gained attention in the field of in vitro modeling due to their...
Biological barriers are indispensable for the integrity and function of many vertebrate organs. The ...
Epithelial tissue serves as an interface between biological compartments. Many in vitro epithelial c...
The interconnection of different tissue-tissue interfaces may extend organ-on-chips to a new generat...
Epithelia cover inner and outer surfaces of the body of eumetazoic animals.1-3 Thus, epithelia repre...
The brain capillary endothelium is highly regulatory, maintaining the chemical stability of the brai...
Endothelial and epithelial cellular barriers play a vital role in the selective transport of solutes...
Microphysiological systems, also known as organ-on-a-chip systems, possess significant potential as ...
The vasculature in the brain is formed by brain microvascular endothelial cells (BMECs) surrounded b...
Epithelial tissues are composed of layers of tightly connected cells shaped into complex three-dimen...