Neuroprotective gap-junction-mediated bystander transformations in the adult zebrafish spinal cord after injury

Author:

Pedroni Andrea,Dai Yu-Wen E.,Lafouasse LeslieORCID,Chang Weipang,Srivastava Ipsit,Del Vecchio Lisa,Ampatzis KonstantinosORCID

Abstract

AbstractThe adult zebrafish spinal cord displays an impressive innate ability to regenerate after traumatic insults, yet the underlying adaptive cellular mechanisms remain elusive. Here, we show that while the cellular and tissue responses after injury are largely conserved among vertebrates, the large-size fast spinal zebrafish motoneurons are remarkably resilient by remaining viable and functional. We also reveal the dynamic changes in motoneuron glutamatergic input, excitability, and calcium signaling, and we underscore the critical role of calretinin (CR) in binding and buffering the intracellular calcium after injury. Importantly, we demonstrate the presence and the dynamics of a neuron-to-neuron bystander neuroprotective biochemical cooperation mediated through gap junction channels. Our findings support a model in which the intimate and dynamic interplay between glutamate signaling, calcium buffering, gap junction channels, and intercellular cooperation upholds cell survival and promotes the initiation of regeneration.

Funder

Vetenskapsrådet

Hjärnfonden

Stiftelsen Olle Engkvist Byggmästare

Gösta Fraenckels Stiftelse för Medicinsk Forskning

Erik och Edith Fernströms Stiftelse för Medicinsk Forskning

StratNeuro Anna-Stina och John Mattsons Minnesstiftelse för sonen Johan

O. E. och Edla Johanssons Vetenskapliga Stiftelse

Karolinska Institutet

Publisher

Springer Science and Business Media LLC

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