DOI: 10.3390/ijms27156908 ISSN: 1422-0067

Ca2+-Independent Short-Term Depression in the Hippocampal CA1 Region

Margarita A. Novikova, David Jappy, Dmitrii A. Fedorov, Elizaveta A. Klimanova, Georgii M. Nikolaev, Irina A. Korneeva, Olga D. Lopina, Olga A. Averina, Andrei Rozov, Alexander V. Latanov

Ca2+ influx is usually considered a central trigger of neuronal plasticity, especially in mechanisms related to transmitter release and synaptic modification. However, plasticity may also involve mechanisms that do not require Ca2+ influx into neurons. We tested whether short-term plasticity can occur in the CA1 region of the mouse hippocampus under Ca2+-free conditions. In Ca2+-free artificial cerebrospinal fluid, in which synaptic transmission was not detected, local stimulation evoked a population potential in CA1, and theta-burst stimulation led to short-term depression during the stimulation protocol. This depression included three separable components: depression within bursts, cumulative depression of the first response across bursts, and enhancement of within-burst depression during repeated bursts. Whole-cell current-clamp recordings showed that the TBS stimulation protocol also changed action-potential kinetics at the level of individual neurons. These changes were expressed in CA1 pyramidal neurons as a reduction of maximum rise rate and slowing of repolarization, whereas stratum oriens interneurons did not show within-burst depression nor enhancement. Together, these data show that theta-burst stimulation can induce Ca2+-influx-independent short-term plasticity of action potentials in hippocampal CA1 pyramidal cells.

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