Urothelial Cells

Urothelial cells are specialized epithelial cells that line the urinary tract, including the renal pelvis, ureters, bladder, and urethra, where they form a flexible barrier between urine and underlying tissues. Their multilayered organization includes superficial umbrella cells, which expand as the bladder fills, while tight junctions and uroplakins strengthen the apical surface and limit permeability to water, ions, and toxic solutes. Urothelial cells also participate in sensing and signaling during urinary tract irritation, infection, and injury. Studying their structure, barrier function, and responses supports research into bladder physiology, urinary tract disease, infection, cancer, and tissue repair.

Urothelial Cells - Related Videos

Research

JoVE EoE - Urinary Tract Cancer

Patient-derived Tumor Xenografting: A Technique to Generate Experimental Mouse Model for Evaluating Urothelial Cell Carcinoma

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2023

This video describes the procedure to generate an experimental xenograft murine model, which can be used for studying urothelial cell carcinoma progression.

Ex Vivo Analysis of Mechanically Activated Ca2+ Transients in Urothelial Cells

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2022

This protocol describes a methodology to assess the function of mechanically activated ion channels in native urothelial cells using the fluorescent Ca2+ sensor GCaMP5G.

Delivery of DNA Plasmids into Urothelium of Mouse Bladder: An Electroporation-based Procedure to Efficiently Deliver DNA Plasmids into Urothelial Cells of Murine Bladder to Generate Genetically Engineered Models

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2023

This video demonstrates the delivery of DNA plasmid into the urothelium of the mouse bladder using a combination of urethral catheterization and electroporation techniques. The described procedure allows the generation of mouse bladder cancer models.

Ex Vivo Organoid Model of Adenovirus-Cre Mediated Gene Deletions in Mouse Urothelial Cells

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Cited by 2 •

2022

This protocol describes the process of the generation and characterization of mouse urothelial organoids harboring deletions in genes of interest. The methods include harvesting mouse urothelial cells, ex vivo transduction with adenovirus driving Cre expression with a CMV promoter, and in vitro as well as in vivo characterization.

In Vivo Luminal Measurement of Distension-Evoked Urothelial ATP Release in Rodents

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Cited by 1 •

2022

This protocol describes the procedure for measuring ATP concentrations in the lumen of the bladder in an anesthetized rodent.

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