An inhibitor of Krüppel-like factor 5 suppresses peritoneal fibrosis in mice

Author:

Muta Kumiko1ORCID,Nakazawa Yuka2,Obata Yoko13,Inoue Hiro1,Torigoe Kenta1ORCID,Nakazawa Masayuki4,Abe Katsushige5,Furusu Akira6,Miyazaki Masanobu7,Yamamoto Kazuo8,Koji Takehiko9,Nishino Tomoya1

Affiliation:

1. Department of Nephrology, Nagasaki University Hospital, Japan

2. Department of Nephrology, Hokusyo Central Hospital, Nagasaki, Japan

3. Medical Education Development Center, Nagasaki University Hospital, Japan

4. Department of Nephrology, Sasebo City Central Hospital, Nagasaki, Japan

5. Jiikai Hospital, Oita, Japan

6. Department of Nephrology, Wajinkai Hospital, Nagasaki, Japan

7. Miyazaki Clinic, Nagasaki, Japan

8. Biomedical Research Support Center, Nagasaki University School of Medicine, Japan

9. Department of Histology and Cell Biology, Nagasaki University Graduate School of Biomedical Sciences, Japan

Abstract

Back ground: Krüppel-like transcription factor 5 (KLF5) is a transcription factor regulating cell proliferation, angiogenesis and differentiation. It has been recently reported that Am80, a synthetic retinoic acid receptor α-specific agonist, inhibits the expression of KLF5. In the present study, we have examined the expression of KLF5 in fibrotic peritoneum induced by chlorhexidine gluconate (CG) in mouse and evaluated that Am80, as an inhibitor of KLF5, can reduce peritoneal fibrosis. Methods: Peritoneal fibrosis was induced by intraperitoneal injection of CG into peritoneal cavity of ICR mice. Am80 was administered orally for every day from the start of CG injection. Control mice received only a vehicle (0.5% carboxymethylcellulose solution). After 3 weeks of treatment, peritoneal equilibration test (PET) was performed and peritoneal tissues were examined by immunohistochemistry. Results: The expression of KLF5 was less found in the peritoneal tissue of control mice, while KLF5 was expressed in the thickened submesothelial area of CG-injected mice receiving the vehicle. Am80 treatment reduced KLF5 expression and remarkably attenuated peritoneal thickening, accompanied with the reduction of type III collagen expression. The numbers of transforming growth factor β-positive cells, α-smooth muscle actin-positive cells and infiltrating macrophages were significantly decreased in Am80-treated group. PET revealed the increased peritoneal permeability in CG mice, whereas Am80 administration significantly improved the peritoneal high permeability state. Conclusions: These results indicate the involvement of KLF5 in the progression of experimental peritoneal fibrosis and suggest that Am80 may be potentially useful for the prevention of peritoneal fibrosis through inhibition of KLF5 expression.

Funder

JSPS KAKENHI Grant-in-Aid for Young Scientists

Publisher

SAGE Publications

Subject

Nephrology,General Medicine

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