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A Single Cell Dissociation Approach for Molecular Analysis of Urinary Bladder in the Mouse Following Spinal Cord Injury
Published on: June 17, 2020
Single-cell transcriptomics reveals bladder microenvironment dynamics in Hunner type interstitial cystitis
Fumihiko Urabe1,2, Kentaro Yoshihara1,2, Jun Nakayama3,4
1Department of Urology, The Jikei University School of Medicine, Tokyo, Japan.
Abstract:
Hunner type interstitial cystitis is a chronic inflammatory bladder disorder characterized by pain and severe lower urinary tract symptoms. Using single-cell RNA sequencing of Hunner lesions, non-Hunner lesions, and control bladder tissues, we characterized cellular states and intercellular communication within the bladder microenvironment. We identified a neuregulin enriched fibroblast population that was preferentially expanded in Hunner lesions and exhibited enhanced signaling toward basal epithelial cells through NRG and WNT pathways. In contrast, myofibroblast states were more prominent in non-Hunner lesions. Epithelial cells showed increased heterogeneity and differentiation toward inflammatory umbrella cell states, consistent with tissue remodeling. These findings define stromal and epithelial alterations across the diseased bladder and highlight fibroblast epithelial communication as a potential contributor to chronic inflammation and tissue remodeling in Hunner type interstitial cystitis.
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