Abnormalities in Expression of Structural, Barrier and Differentiation Related Proteins, and Chondroitin Sulfate in Feline and Human Interstitial Cystitis

Paul J. Hauser, Samuel B. Vangordon, Jonathan Seavey, Troy M. Sofinowski, Mohammad Ramadan, Shivon Abdullah, C. A.Tony Buffington, Robert E. Hurst

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

Purpose We analyzed the urothelium of cats diagnosed with feline interstitial cystitis to determine whether abnormalities in protein expression patterns could be detected and whether the expression pattern was similar to that in patients with human interstitial cystitis/bladder pain syndrome. The proteins analyzed are involved in cell adhesion and barrier function, comprise the glycosaminoglycan layer or are differentiation markers. Materials and Methods Formalin fixed biopsies from 8 cats with feline interstitial cystitis and from 7 healthy control cats were labeled by immunohistochemistry and scored with a modified version of a system previously used for human samples. Cluster analysis was performed to investigate relationships between markers and samples. Results Of the feline interstitial cystitis bladders 89% showed abnormal protein expression and chondroitin sulfate patterns while only 27% of normal tissues showed slight abnormalities. Abnormalities were found in most feline interstitial cystitis samples, including biglycan in 87.5%, chondroitin sulfate, decorin, E-cadherin and keratin-20 in 100%, uroplakin in 50% and ZO-1 in 87.5%. In feline interstitial cystitis bladders about 75% of chondroitin sulfate, biglycan and decorin samples demonstrated absent luminal staining or no staining. Cluster analysis revealed that feline interstitial cystitis and normal samples could be clearly separated into 2 groups, showing that the urothelium of cats with feline interstitial cystitis is altered from normal urothelium. Conclusions Feline interstitial cystitis produces changes in luminal glycosaminoglycan and several proteins similar to that in patients, suggesting some commonality in mechanism. Results support the use of feline interstitial cystitis as a model of human interstitial cystitis.

Original languageEnglish (US)
Pages (from-to)571-577
Number of pages7
JournalJournal of Urology
Volume194
Issue number2
DOIs
StatePublished - 2015
Externally publishedYes

Keywords

  • animal
  • biological markers
  • cats
  • cystitis
  • interstitial
  • models
  • urinary bladder

ASJC Scopus subject areas

  • Urology

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