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Updated: May 15, 2026

Gut Isolation from Zebrafish Larvae for Single-cell RNA Sequencing
Published on: November 10, 2023
Characterization of enteric neurons in wild-type and mutant zebrafish using semi-automated cell counting and
Levi W Simonson1, Julia Ganz, Ellie Melancon
1Institute of Neuroscience, University of Oregon , Eugene, OR 97403, USA.
Abstract:
To characterize fluorescent enteric neurons labeled for expression of cytoplasmic markers in zebrafish mutants, we developed a new MATLAB-based program that can be trained by user input. We used the program to count enteric neurons and to analyze co-expression of the neuronal marker, Elavl, and the neuronal subtype marker, serotonin, in 3D confocal image stacks of dissected whole-mount zebrafish intestines. We quantified the entire population of enteric neurons and the serotonergic subpopulation in specific regions of the intestines of gutwrencher mutant and wild-type sibling larvae. We show a marked decrease in enteric neurons in gutwrencher mutants that is more severe at the caudal end of the intestine. We also show that gutwrencher mutants have the same number of serotonin-positive enteroendocrine cells in the intestine as wild types.

