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  • Analysis of the distal urinary tract in larval and adult zebrafish reveals homology to the human system.

Analysis of the distal urinary tract in larval and adult zebrafish reveals homology to the human system.

Disease models & mechanisms (2023-06-09)
Ibrahim Jubber, Duncan R Morhardt, Jonathan Griffin, Marcus G Cumberbatch, Maggie Glover, Yang Zheng, Ishtiaq Rehman, Catherine A Loynes, Syed A Hussain, Stephen A Renshaw, Steven D Leach, Vincent T Cunliffe, James W F Catto
ABSTRACT

Little is known about the distal excretory component of the urinary tract in Danio rerio (zebrafish). This component is affected by many human diseases and disorders of development. Here, we have undertaken multi-level analyses to determine the structure and composition of the distal urinary tract in the zebrafish. In silico searches identified uroplakin 1a (ukp1a), uroplakin 2 (upk2) and uroplakin 3b (upk3b) genes in the zebrafish genome (orthologues to genes that encode urothelium-specific proteins in humans). In situ hybridization demonstrated ukp1a expression in the zebrafish pronephros and cloaca from 96 h post-fertilization. Haematoxylin and Eosin staining of adult zebrafish demonstrated two mesonephric ducts uniting into a urinary bladder that leads to a distinct urethral opening. Immunohistochemistry identified Uroplakin 1a, Uroplakin 2 and GATA3 expression in zebrafish urinary bladder cell layers that match human urothelial expression. Fluorescent dye injections demonstrated zebrafish urinary bladder function, including urine storage and intermittent micturition, and a urethral orifice separate from the larger anal canal and rectum. Our findings reveal homology between the urinary tracts of zebrafish and humans, and offer the former as a model system to study disease.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-GATA3 antibody produced in rabbit, affinity isolated antibody
Sigma-Aldrich
Anti-CD44 antibody produced in mouse, purified immunoglobulin, buffered aqueous solution