bioRxiv · 10.1101/2022.12.15.520642
Daily fluctuations in spinal adenosine determine mechanisms of respiratory motor plasticity
Abstract
Plasticity is a fundamental property of the neuromotor system controlling breathing. One key example of respiratory motor plasticity is phrenic long-term facilitation (pLTF), a persistent increase in phrenic nerve activity after exposure to intermittent low oxygen or acute intermittent hypoxia (AIH). pLTF can arise from distinct intracellular signaling cascades initiated by serotonin and adenosine; these cascades interact via powerful crosstalk inhibition. We demonstrate the serotonin/adenosine balance varies dramatically with time-of-day and details of the AIH protocol. Using a "standard" AIH protocol, the mechanism driving pLTF shifts from serotonin-dominant, adenosine-constrained during rest, to adenosine-dominant, serotonin-constrained in the active phase. This mechanistic flip results from daily changes in basal spinal adenosine levels across time-of-day combined with hypoxia-evoked spinal adenosine release. Since AIH is emerging as a promising therapeutic modality to restore respiratory (and non-respiratory) movements in people with spinal injury or ALS, new knowledge that time-of-day and protocol details impact mechanisms driving pLTF has experimental, biological and translational implications.
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Marciante, A. B., Seven, Y. B., Kelly, M. N., Perim, R. R., Mitchell, G. S.. 2022-12-19. Daily fluctuations in spinal adenosine determine mechanisms of respiratory motor plasticity. https://doi.org/10.1101/2022.12.15.520642
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