Activity-Dependent Changes in Extracellular Ca2+ and K+ Reveal Pacemakers in the Spinal Locomotor-Related Network

作者:Brocard Frederic*; Shevtsova Natalia A; Bouhadfane Mouloud; Tazerart Sabrina; Heinemann Uwe; Rybak Ilya A; Vinay Laurent
来源:Neuron, 2013, 77(6): 1047-1054.
DOI:10.1016/j.neuron.2013.01.026

摘要

Changes in the extracellular ionic concentrations occur as a natural consequence of firing activity in large populations of neurons. The extent to which these changes alter the properties of individual neurons and the operation of neuronal networks remains unknown. Here, we show that the locomotorlike activity in the isolated neonatal rodent spinal cord reduces the extracellular calcium ([Ca2+](o)) to 0.9 mM and increases the extracellular potassium ([K+](o)) to 6 mM. Such changes in [Ca2+](o) and [K+](o) trigger pacemaker activities in interneurons considered to be part of the locomotor network. Experimental data and a modeling study show that the emergence of pacemaker properties critically involves a [Ca2+](o)-dependent activation of the persistent sodium current (I-NaP). These results support a concept for locomotor rhythm generation in which I-NaP-dependent pacemaker properties in spinal interneurons are switched on and tuned by activity-dependent changes in [Ca2+](o) and [K+](o).

  • 出版日期2013-3-20