TY - JOUR T1 - Macrophages break interneuromast cell quiescence by intervening the inhibition of Schwann cells in zebrafish lateral line JF - bioRxiv DO - 10.1101/2021.12.29.474498 SP - 2021.12.29.474498 AU - Meng-Ju Lin AU - Chia-Ming Lee AU - Wei-Lin Hsu AU - Bi-Chang Chen AU - Shyh-Jye Lee Y1 - 2021/01/01 UR - http://biorxiv.org/content/early/2021/12/30/2021.12.29.474498.abstract N2 - In the zebrafish lateral line system, interneuromast cells (INCs) between neuromasts are normally kept quiescent by underlying Schwann cells (SWCs). Upon severe injuries that cause the complete loss of an entire NM, INCs can occasionally differentiate into NMs but how they escape from the inhibition by SWCs is still unclear. Using a genetic/chemical method to specifically ablate a neuromast, we found a small portion of larvae can regenerate a new neuromast, but the regeneration was hindered by inhibiting macrophages. We also demonstrated that the inhibition of macrophage can reduce the percentage of tail fin-amputated larvae to regenerate a new NM. By in toto imaging, we further discovered heterogeneities in macrophage behavior and distribution along lateral line. We witnessed the crawling of macrophages in between injured lateral line and SWCs during regeneration and also in between the second primordium and the first mature lateral line during development. It implies that macrophages may physically separate and alleviate the inhibition from pLLn and SWCs to break the quiescence of INCs during regeneration and development in the zebrafish lateral line.Competing Interest StatementThe authors have declared no competing interest. ER -