While intracellular adenosine triphosphate (ATP) occupies a key position in the bioenergetic metabolism of all the cellular compartments that form the tumor microenvironment (TME) …
Cancers are able to grow by subverting immune suppressive pathways, to prevent the malignant cells as being recognized as dangerous or foreign. This mechanism prevents the …
Inflammatory conditions are associated with the extracellular release of nucleotides, particularly ATP. In the extracellular compartment, ATP predominantly functions as a …
J Stagg, E Golden, E Wennerberg, S Demaria - Science immunology, 2023 - science.org
The extracellular nucleoside adenosine reduces tissue inflammation and is generated by irreversible dephosphorylation of adenosine monophosphate (AMP) mediated by the …
Ischemia and reperfusion–elicited tissue injury contributes to morbidity and mortality in a wide range of pathologies, including myocardial infarction, ischemic stroke, acute kidney …
M Dosch, J Gerber, F Jebbawi, G Beldi - International journal of molecular …, 2018 - mdpi.com
Extracellular nucleotides (eg, ATP, ADP, UTP, UDP) released by inflammatory cells interact with specific purinergic P2 type receptors to modulate their recruitment and activation. The …
Receptors for ATP and ADP and adenosine exert various effects. ATP and ADP signaling is mainly proinflammatory, and adenosine signaling is mainly antiinflammatory. Receptors for …
AL Giuliani, AC Sarti, F Di Virgilio - Immunology letters, 2019 - Elsevier
Extracellular nucleotides, mainly ATP, but also ADP, UTP, UDP and UDP-sugars, adenosine, and adenine base participate in the “purinergic signalling” pathway, an …
WG Junger - Nature Reviews Immunology, 2011 - nature.com
Stimulation of almost all mammalian cell types leads to the release of cellular ATP and autocrine feedback through a diverse array of purinergic receptors. Depending on the types …