A 5-hydroxytryptamine receptor antagonist, sarpogrelate, reduces renal tubulointerstitial fibrosis by suppressing PAI-1

Author:

Hamasaki Yoshifumi12,Doi Kent13,Maeda-Mamiya Rui1,Ogasawara Emi1,Katagiri Daisuke1,Tanaka Tamami1,Yamamoto Tokunori4,Sugaya Takeshi5,Nangaku Masaomi1,Noiri Eisei167

Affiliation:

1. Department of Nephrology and Endocrinology, The University of Tokyo, Tokyo, Japan;

2. 22nd Century Medical and Research Center, University Hospital, The University of Tokyo, Tokyo, Japan;

3. Department of Emergency and Critical Care Medicine, The University of Tokyo, Tokyo, Japan;

4. Department of Urology, Nagoya University, Nagoya, Japan;

5. CMIC Company, Limited, Tokyo, Japan; and

6. Department of Apheresis and Dialysis, The University of Tokyo, Tokyo, Japan;

7. Japan Science and Technology Agency/Japan International Cooperation Agency (JST/JICA), Science and Technology Research Partnership for Sustainable Development (SATREPS), Tokyo, Japan

Abstract

A selective 5-hydroxytryptamine (5-HT) 2A receptor antagonist sarpogrelate (SG) blocks serotonin-induced platelet aggregation. It has been used clinically for the treatment of peripheral arterial disease. SG might be able to improve chronic ischemia, which contributes to renal fibrosis progression by maintaining renal microcirculation. This study investigated whether SG suppresses renal fibrosis. C57BL/6 mice fed a 0.2% adenine-containing diet for 6 wk developed severe tubulointerstitial fibrosis with kidney dysfunction. Subsequent SG treatment (30 mg·kg−1·day−1) for 4 wk improved these changes significantly by increasing peritubular blood flow in the fibrotic area, as evaluated by intravital microscopy and decreasing fibrin deposition. Urinary L-type fatty acid-binding protein, up-regulated by renal hypoxia, was also reduced by SG. Additionally, results showed that mRNA expression of plasminogen activator inhibitor-1 (PAI-1), which is known to promote fibrosis by mediating and enhancing transforming growth factor (TGF)-β1 signaling, was suppressed by SG treatment in the kidney. In vitro experiments using cultured murine proximal tubular epithelial (mProx) cells revealed that incubation with TGF-β1 and 5-HT increased PAI-1 mRNA expression; SG significantly reduced it. In conclusion, SG reduces renal fibrosis not only by the antithrombotic effect of maintaining peritubular blood flow but also by suppressing PAI-1 expression in renal tubular cells.

Publisher

American Physiological Society

Subject

Physiology

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