The kisspeptin-1 receptor antagonist peptide-234 aggravates uremic cardiomyopathy in a rat model

Author:

Dinh Hoa,Kovács Zsuzsanna Z. A.,Márványkövi Fanni,Kis Merse,Kupecz Klaudia,Szűcs Gergő,Freiwan Marah,Lauber Gülsüm Yilmaz,Acar Eylem,Siska Andrea,Ibos Katalin Eszter,Bodnár Éva,Kriston András,Kovács Ferenc,Horváth Péter,Földesi Imre,Cserni Gábor,Podesser Bruno K.,Pokreisz Peter,Kiss Attila,Dux László,Csabafi Krisztina,Sárközy Márta

Abstract

AbstractUremic cardiomyopathy is characterized by diastolic dysfunction, left ventricular hypertrophy (LVH), and fibrosis. Dysregulation of the kisspeptin receptor (KISS1R)-mediated pathways are associated with the development of fibrosis in cancerous diseases. Here, we investigated the effects of the KISS1R antagonist peptide-234 (P234) on the development of uremic cardiomyopathy. Male Wistar rats (300–350 g) were randomized into four groups: (i) Sham, (ii) chronic kidney disease (CKD) induced by 5/6 nephrectomy, (iii) CKD treated with a lower dose of P234 (ip. 13 µg/day), (iv) CKD treated with a higher dose of P234 (ip. 26 µg/day). Treatments were administered daily from week 3 for 10 days. At week 13, the P234 administration did not influence the creatinine clearance and urinary protein excretion. However, the higher dose of P234 led to reduced anterior and posterior wall thicknesses, more severe interstitial fibrosis, and overexpression of genes associated with left ventricular remodeling (Ctgf, Tgfb, Col3a1, Mmp9), stretch (Nppa), and apoptosis (Bax, Bcl2, Casp7) compared to the CKD group. In contrast, no significant differences were found in the expressions of apoptosis-associated proteins between the groups. Our results suggest that the higher dose of P234 hastens the development and pathophysiology of uremic cardiomyopathy by activating the fibrotic TGF-β-mediated pathways.

Funder

Tempus Public Foundation

Ministry of Human Capacities, Hungary

National Research, Development and Innovation Office

Szeged Scientists Academy Program, Hungary

Theodor Körner Founds, Austria

Hungarian Academy of Sciences

University of Szeged

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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