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◆ International journal of molecular sciences2026-08-01

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

原始摘要(英文原文)· Original abstract
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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Ca2+-Independent Short-Term Depression in the Hippocampal CA1 Region. — 科研速览 Science Skim