Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8840668 | Neuroscience | 2018 | 22 Pages |
Abstract
In the whole-mount neuromuscular junction (NMJ) preparation, adenosine (100â¯Î¼M) significantly reduced the frequency of the miniature endplate currents (MEPCs) and slowed their rising and decay time. Consistent with a postsynaptic site of action, adenosine and the potent P1 receptor agonist NECA significantly increased the open probability, the frequency and the open time of single nAChR channels, recorded at the endplate region. Using specific ligands for the P1 receptor subtypes, we found that the low-affinity P1 receptor subtype A2B was responsible for mediating the effects of adenosine on the nAChR channel openings. Our data suggest that at the adult mammalian NMJ, adenosine acts not only presynaptically to modulate acetylcholine transmitter release, but also at the postsynaptic level, to enhance the activity of nAChRs. Our findings open a new scenario in understanding of purinergic regulation of nAChR activity at the mammalian endplate region.
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Authors
Annalisa Bernareggi, Elisa Ren, Arthur Giniatullin, Elisa Luin, Marina Sciancalepore, Rashid Giniatullin, Paola Lorenzon,