For a long time, the tight junction (TJ) was known to form and regulate the paracellular barrier between epithelia and endothelial cell sheets. Starting shortly after the discovery of the proteins forming the TJ—mainly the two families of claudins and TAMPs—several other functions have been discovered, a striking one being the surprising finding that some claudins form paracellular channels for small ions and/or water. This Special Issue includes 43 articles covering numerous dedicated topics including pathogens affecting the TJ barrier, TJ regulation via immune cells, the TJ as a therapeutic target, TJ and cell polarity, function and regulation by proteins of the tricellular TJ, TJ as a regulator of cellular processes, organ- and tissue-sp...
Human gastrointestinal tract is covered by a monolayer of specialized epithelial cells that constitu...
Tight Junctions are the most apical element of the junctional complex in epithelial and endothelial ...
AbstractThe claudins have recently been identified as a large family of transmembrane proteins locat...
For a long time, the tight junction (TJ) was known to form and regulate the paracellular barrier bet...
A fundamental function of epithelia and endothelia is to separate different compartments within the ...
10.1152/ajpcell.00558.2003.—Multicellular organisms are separated from the ex-ternal environment by ...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
Tight junctions (TJs) are highly specialized membrane domains involved in many important cellular pr...
Tight junctions are intercellular junctions adjacent to the lateral end of the apical membrane. They...
Formation of tissue barriers by epithelial and endothelial cells requires neighbouring cells to inte...
As the most apical structure between epithelial and endothelial cells, tight junctions (TJ) are well...
AbstractAs the most apical structure between epithelial and endothelial cells, tight junctions (TJ) ...
AbstractTight junctions contribute to the paracellular barrier, the fence dividing plasma membranes,...
The morphological feature of tight junctions (TJs) fits well with their functions. The core of TJs i...
The epithelial linings of eukaryotic organs form dynamically-regulated selectively-permeable barrier...
Human gastrointestinal tract is covered by a monolayer of specialized epithelial cells that constitu...
Tight Junctions are the most apical element of the junctional complex in epithelial and endothelial ...
AbstractThe claudins have recently been identified as a large family of transmembrane proteins locat...
For a long time, the tight junction (TJ) was known to form and regulate the paracellular barrier bet...
A fundamental function of epithelia and endothelia is to separate different compartments within the ...
10.1152/ajpcell.00558.2003.—Multicellular organisms are separated from the ex-ternal environment by ...
Understanding of tight junctions has evolved from their historical perception as inert solute barrie...
Tight junctions (TJs) are highly specialized membrane domains involved in many important cellular pr...
Tight junctions are intercellular junctions adjacent to the lateral end of the apical membrane. They...
Formation of tissue barriers by epithelial and endothelial cells requires neighbouring cells to inte...
As the most apical structure between epithelial and endothelial cells, tight junctions (TJ) are well...
AbstractAs the most apical structure between epithelial and endothelial cells, tight junctions (TJ) ...
AbstractTight junctions contribute to the paracellular barrier, the fence dividing plasma membranes,...
The morphological feature of tight junctions (TJs) fits well with their functions. The core of TJs i...
The epithelial linings of eukaryotic organs form dynamically-regulated selectively-permeable barrier...
Human gastrointestinal tract is covered by a monolayer of specialized epithelial cells that constitu...
Tight Junctions are the most apical element of the junctional complex in epithelial and endothelial ...
AbstractThe claudins have recently been identified as a large family of transmembrane proteins locat...