Anti-fibrotic potential of erythropoietin signaling on bone marrow derived fibrotic cell
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Published:2021-05-31
Issue:1
Volume:22
Page:
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ISSN:1471-2369
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Container-title:BMC Nephrology
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language:en
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Short-container-title:BMC Nephrol
Author:
Iwata Yasunori,Sakai Norihiko,Nakajima Yuki,Oshima Megumi,Nakagawa-Yoneda Shiori,Ogura Hisayuki,Sato Koichi,Minami Taichiro,Kitajima Shinji,Toyama Tadashi,Yamamura Yuta,Miyagawa Taro,Hara Akinori,Shimizu Miho,Furuichi Kengo,Wada Takashi
Abstract
Abstract
Introduction
The number of patients with end stage kidney disease (ESKD) are increasing world-side. While interstitial fibrosis (IF) is a common step for the progression to ESKD, therapeutic options for IF is still limited in clinical settings. We have reported that bone marrow-derived fibrotic cell, fibrocyte, is involved in the pathogenesis of kidney fibrosis. Also recent studies revealed that erythropoietin has protective effect on kidney diseases. However, it is unknown whether erythropoietin (EPO) inhibits fibrosis in progressive kidney injury. Therefore, we explored the impacts of EPO on kidney fibrosis with focusing on fibrocyte.
Method
Fibrocyte was differentiated from peripheral mononuclear cells of healthy donor. Fibrocyte was stimulated with transforming growth factor beta (TGF)-β with/without EPO treatment. Moreover, the therapeutic effect of EPO was evaluated in murine unilateral ureteral obstruction (UUO) model.
Result
TGF-β stimulation increased the expression of COL1 mRNA in fibrocyte. EPO signal reduced the expression of COL1 mRNA in dose dependent manner. EPO reduced mitochondrial oxidative stress and ameliorated mitochondrial membrane depolarization induced by TGF-β stimulation. Moreover, EPO reduced the mRNA expression of mitochondria related molecules, TRAF6, in fibrocyte. In addition, the count of CD45+/αSMA + double-positive fibrocyte was decreased in the EPO-administered UUO kidneys.
Conclusion
EPO signals function to prevent kidney fibrosis, particularly in fibrocyte. Regulating the renal accumulation of fibrocyte is a part of the anti-fibrotic functions of EPO.
Funder
the Japan Society for the Promotion of Science KAKENHI
Publisher
Springer Science and Business Media LLC
Reference22 articles.
1. Sakai N, Wada T, Yokoyama H, Lipp M, Ueha S, Matsushima K, Kaneko S. Secondary lymphoid tissue chemokine (SLC/CCL21)/CCR7 signaling regulates fibrocytes in renal fibrosis. Proc Natl Acad Sci U S A. 2006. 103(38):14098–103. 2. Sakai N, Furuichi K, Shinozaki Y, Yamauchi H, Toyama T, Kitajima S, Okumura T, Kokubo S, Kobayashi M, Takasawa K, Takeda S, Yoshimura M, Kaneko S, Wada T. Fibrocytes are involved in the pathogenesis of human chronic kidney disease. Hum Pathol. 2010. 41(5):672–8. 3. Hara A, Furuichi K, Higuchi M, Iwata Y, Sakai N, Kaneko S, Wada T. Autoantibodies to erythropoietin receptor in patients with immune-mediated diseases: relationship to anaemia with erythroid hypoplasia. Br J Haematol. 2013. 160(2):244–50. 4. Hara A, Wada T, Kitajima S, Toyama T, Okumura T, Kitagawa K, Iwata Y, Sakai N, Furuichi K, Higuchi M, Kaneko S. Combined pure red cell aplasia and autoimmune hemolytic anemia in systemic lupus erythematosus with anti-erythropoietin autoantibodies. Am J Hematol. 2008. 83(9):750–2. 5. Cassis P, Gallon L, Benigni A, Mister M, Pezzotta A, Solini S, Gagliardini E, Cugini D, Abbate M, Aiello S, Rocchetta F, Scudeletti P, Perico N, Noris M, Remuzzi G. Erythropoietin, but not the correction of anemia alone, protects from chronic kidney allograft injury. Kidney Int. 2012. 81(9):903–18.
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