PUBLICATION

Optimized chemogenetic ablation and regeneration of enteric nervous system neurons in zebrafish

Authors
Shah, M.A., Moran, K.K., Rueckert, H., Sharrock, A.V., Ackerley, D.F., Mumm, J.S., Ganz, J.
ID
ZDB-PUB-260715-1
Date
2026
Source
Stem Cell Reports   21: 102966 (Journal)
Registered Authors
Ganz, Julia, Mumm, Jeff
Keywords
ENS diseases, chemogenetic ablation, enteric neurons, functional recovery, gut motility, immune response
MeSH Terms
none
PubMed
42447850 Full text @ Stem Cell Reports
Abstract
The enteric nervous system (ENS) is the intrinsic nervous system of the gut and regulates essential functions, including motility. ENS loss is associated with gastrointestinal disorders such as Hirschsprung disease. Restoring missing neurons by stimulating neuronal regeneration presents a promising therapeutic approach for ENS disorders. To study ENS regeneration, we developed a targeted chemogenetic neuron ablation model in zebrafish using the Gal4/UAS-NTR 2.0 system. Spatially and temporally controlled neuronal death was confirmed by morphological changes, neuron loss quantification, and TUNEL assay. We observed an acute immune response that normalizes at 1 day post-treatment (dpt). We found complete restoration of ENS neuron numbers to control levels by 9 dpt, with recovery of gut motility. We identify neuronal subtype-specific differences in regenerative capacity and/or timing of cell replacement. Our study establishes a robust platform for dissecting the cellular-molecular mechanisms of ENS regeneration to develop potential treatment approaches for ENS-related disorders.
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Human Disease / Model
Sequence Targeting Reagents
Fish
Antibodies
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