Spontaneous activity of astrocytes is a stochastic functional signal for memory consolidation.

Losi, Gabriele; Vignoli, Beatrice; Granata, Rocco; Lia, Annamaria; Zonta, Micaela; Sansevero, Gabriele; Pischedda, Francesca; Chiavegato, Angela et al. · Proc Natl Acad Sci U S A · 2025

basic_science · Level V

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Abstract

In the absence of explicit neuronal inputs, the glial cell astrocytes exhibit recurring intracellular Ca<sup>2+</sup> fluctuations, primarily localized at thin processes, known as Ca<sup>2+</sup> microdomains (MDs). Although spontaneous Ca<sup>2+</sup> MDs are present throughout the brain, their putative role is unknown. Here, we question whether, owing to their recurring signaling mode, spontaneous Ca<sup>2+</sup> MDs contribute to slowly evolving phenomena in the brain, such as memory consolidation. We demonstrate that, in the perirhinal cortex, a central region in recognition memory, these events promote Ca<sup>2+</sup>-dependent gliotransmission and modulate synaptic strengthening. Their recurring activity extends the release of the gliotransmitter brain-derived neurotrophic factor (BDNF) over time, ensuring the sustained Tropomyosin Receptor Kinase B (TrkB)-signaling required for the consolidation of long-term synaptic potentiation and lasting memories. We also show that Ca<sup>2+</sup> MDs, which are stochastic events, preserve their random behavior during gliotransmission, introducing an element of unpredictability into the process of memory retention. Our study assigns to spontaneous, stochastic activity in astrocytes a unique functional role in shaping and stabilizing memory circuits.

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