AbstractVarious pathological conditions are accompanied by ATP release from the intracellular to the extracellular compartment, where it degrades into adenosine and modulates immune responses. Previous studies concluded that both ATP and its degradation product adenosine are important immune-regulatory molecules; ATP acted as a danger signal that promotes immune responses, but adenosine’s effect was inhibitory. In this study, we show that adenosine plays an important role in balancing Th1 and Th17 pathogenic T cell responses in autoimmune disease. While its effect on Th1 responses is inhibitory, its effect on Th17 responses is enhancing, thereby impacting the balance between Th1 and Th17 responses. Mechanistic studies showed that this effec...
Our previous studies demonstrated that γδ T cells have a strong regulatory effect on Th17 autoimmune...
Various pathological conditions are accompanied by ATP release from the intracellular to the extrace...
The adenosine A2A receptor (A2AR), the main functional adenosine receptor on murine T cells, plays a...
Various pathological conditions are accompanied by release of adenosine triphosphate (ATP) from the ...
Various pathological conditions are accompanied by release of adenosine triphosphate (ATP) from the ...
The extracellular level of adenosine increases greatly during inflammation, which modulates immune r...
Regulatory effects of γδ T-cells on immune responses have been studied for years. We have investigat...
The molecular components of the purinergic system (i.e., receptors, metabolizing enzymes and membran...
We have recently reported that, although adenosine receptor (AR) agonists have a suppressive effect ...
<div><p>We have recently reported that, although adenosine receptor (AR) agonists have a suppressive...
Adenosine is a key endogenous signaling molecule that regulates a wide range of physiological functi...
Various pathological conditions are accompanied by ATP release from the intracellular to the extrace...
Extracellular adenosine 50-triphosphate (ATP) and adenosine molecules are intimately involved in imm...
Extracellular adenosine 50-triphosphate (ATP) and adenosine molecules are intimately involved in imm...
Various pathological conditions are accompanied by ATP release from the intracellular to the extrace...
Our previous studies demonstrated that γδ T cells have a strong regulatory effect on Th17 autoimmune...
Various pathological conditions are accompanied by ATP release from the intracellular to the extrace...
The adenosine A2A receptor (A2AR), the main functional adenosine receptor on murine T cells, plays a...
Various pathological conditions are accompanied by release of adenosine triphosphate (ATP) from the ...
Various pathological conditions are accompanied by release of adenosine triphosphate (ATP) from the ...
The extracellular level of adenosine increases greatly during inflammation, which modulates immune r...
Regulatory effects of γδ T-cells on immune responses have been studied for years. We have investigat...
The molecular components of the purinergic system (i.e., receptors, metabolizing enzymes and membran...
We have recently reported that, although adenosine receptor (AR) agonists have a suppressive effect ...
<div><p>We have recently reported that, although adenosine receptor (AR) agonists have a suppressive...
Adenosine is a key endogenous signaling molecule that regulates a wide range of physiological functi...
Various pathological conditions are accompanied by ATP release from the intracellular to the extrace...
Extracellular adenosine 50-triphosphate (ATP) and adenosine molecules are intimately involved in imm...
Extracellular adenosine 50-triphosphate (ATP) and adenosine molecules are intimately involved in imm...
Various pathological conditions are accompanied by ATP release from the intracellular to the extrace...
Our previous studies demonstrated that γδ T cells have a strong regulatory effect on Th17 autoimmune...
Various pathological conditions are accompanied by ATP release from the intracellular to the extrace...
The adenosine A2A receptor (A2AR), the main functional adenosine receptor on murine T cells, plays a...