bioRxiv · 10.1101/2023.08.11.552951
A developmental increase of inhibition promotes the emergence of hippocampal ripples
Abstract
Sharp wave-ripples (SPW-Rs) are a hippocampal network phenomenon critical for memory consolidation and planning. SPW-Rs have been extensively studied in the adult brain, yet their developmental trajectory is poorly understood. While SPWs have been recorded in rodents shortly after birth, the time point and mechanisms of ripple emergence are still unclear. Here, we combine in vivo electrophysiology with optogenetics and chemogenetics in 4 to 12 days-old mice to address this knowledge gap. We show that ripples are robustly detected and induced by light stimulation of ChR2-transfected CA1 pyramidal neurons only from postnatal day (P) 10 onwards. Leveraging a spiking neural network model, we mechanistically link the maturation of inhibition and ripple emergence. We corroborate these findings by reducing ripple rate upon chemogenetic silencing of CA1 interneurons. Finally, we show that early SPW-Rs elicit a more robust prefrontal cortex response then SPWs lacking ripples. Thus, development of inhibition promotes ripples emergence.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Pochinok, I., Stöber, T. M., Triesch, J., Chini, M., Hanganu-Opatz, I. L.. 2023-08-14. A developmental increase of inhibition promotes the emergence of hippocampal ripples. https://doi.org/10.1101/2023.08.11.552951
Cite the original work for its findings. Save a collection to share your selection of sources.