The purinergic signalling system, which uses purines and pyrimidines as chemical transmitters, and purinoceptors as effectors, is deeply rooted in evolution and development and is a pivotal factor in cell communication. The ATP and its derivatives function as a 'danger signal' in the most primitive forms of life. Purinoceptors are extraordinarily widely distributed in all cell types and tissues and they are involved in the regulation of an even more extraordinary number of biological processes. In addition to fast purinergic signalling in neurotransmission, neuromodulation and secretion, there is long-term (trophic) purinergic signalling involving cell proliferation, differentiation, motility and death in the development and regeneration of...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular purines and pyrimidines play major roles during embryogenesis, organogenesis, postnata...
The purinergic signalling system, which uses purines and pyrimidines as chemical transmitters, and p...
There is long-term (trophic) purinergic signalling involving cell proliferation, differentiation, mo...
The purinergic signalling system, which utilises ATP, related nucleotides and adenosine as transmitt...
Purines and their derivatives, most notably adenosine and ATP, are the key molecules controlling int...
In this review, after a summary of the history and current status of the receptors involved in purin...
Purines and their derivatives, most notably adenosine and ATP, are the key molecules controlling int...
Purines and their derivatives, most notably adenosine and ATP, are the key molecules controlling int...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular purines and pyrimidines play major roles during embryogenesis, organogenesis, postnata...
The purinergic signalling system, which uses purines and pyrimidines as chemical transmitters, and p...
There is long-term (trophic) purinergic signalling involving cell proliferation, differentiation, mo...
The purinergic signalling system, which utilises ATP, related nucleotides and adenosine as transmitt...
Purines and their derivatives, most notably adenosine and ATP, are the key molecules controlling int...
In this review, after a summary of the history and current status of the receptors involved in purin...
Purines and their derivatives, most notably adenosine and ATP, are the key molecules controlling int...
Purines and their derivatives, most notably adenosine and ATP, are the key molecules controlling int...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular ATP, related nucleotides and adenosine are among the earliest signaling molecules, ope...
Extracellular purines and pyrimidines play major roles during embryogenesis, organogenesis, postnata...