
In the present review we discuss the potential involvement of adenosinergic signaling, in particular the role of adenosine receptors, in amyotrophic lateral sclerosis (ALS). Though the literature on this topic is not abundant, the information so far available on adenosine receptors in animal models of ALS highlights the interest to continue to explore the role of these receptors in this neurodegenerative disease. Indeed, all motor neurons affected in ALS are responsive to adenosine receptor ligands but interestingly, there are alterations in pre-symptomatic or early symptomatic stages that mirror those in advanced disease stages. Information starts to emerge pointing toward a beneficial role of A2A receptors (A2AR), most probably at early disease states, and a detrimental role of caffeine, in clear contrast with what occurs in other neurodegenerative diseases. However, some evidence also exists on a beneficial action of A2AR antagonists. It may happen that there are time windows where A2AR prove beneficial and others where their blockade is required. Furthermore, the same changes may not occur simultaneously at the different synapses. In line with this, it is not fully understood if ALS is a dying back disease or if it propagates in a centrifugal way. It thus seems crucial to understand how motor neuron dysfunction occurs, how adenosine receptors are involved in those dysfunctions and whether the early changes in purinergic signaling are compensatory or triggers for the disease. Getting this information is crucial before starting the design of purinergic based strategies to halt or delay disease progression.
Pharmacology, amyotrophic lateral sclerosis (ALS), neuromuscular junction, Spinal cord motor neurons, Neuromuscular junction, RM1-950, adenosine receptors, glial cells, Glial cells, Adenosine receptors, Amyotrophic lateral sclerosis (ALS), Therapeutics. Pharmacology, spinal cord motor neurons
Pharmacology, amyotrophic lateral sclerosis (ALS), neuromuscular junction, Spinal cord motor neurons, Neuromuscular junction, RM1-950, adenosine receptors, glial cells, Glial cells, Adenosine receptors, Amyotrophic lateral sclerosis (ALS), Therapeutics. Pharmacology, spinal cord motor neurons
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