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GDF15 antagonism limits severe heart failure and prevents cardiac cachexia.

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Abstract

Heart failure and associated cachexia is an unresolved and important problem. This study aimed to determine the factors that contribute to cardiac cachexia in a new model of heart failure in mice that lack the integrated stress response (ISR) induced eIF2α phosphatase, PPP1R15A. Mice were irradiated and reconstituted with bone marrow cells. Mice lacking functional PPP1R15A, exhibited dilated cardiomyopathy and severe weight loss following irradiation, whilst wild-type mice were unaffected. This was associated with increased expression of Gdf15 in the heart and increased levels of GDF15 in circulation. We provide evidence that the blockade of GDF15 activity prevents cachexia and slows the progression of heart failure. We also show the relevance of GDF15 to lean mass and protein intake in patients with heart failure. Our data suggest that cardiac stress mediates a GDF15-dependent pathway that drives weight loss and worsens cardiac function. Blockade of GDF15 could constitute a novel therapeutic option to limit cardiac cachexia and improve clinical outcomes in patients with severe systolic heart failure.

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Z.M. is supported by the British Heart Foundation professorship and British Heart Foundation grant G101517 and Cambridge BHF Centre of Research Excellence (18/1/34212), NIHR Cambridge Biomedical Research Centre (NIHR203312). SJM is supported by UK Medical Research Council (MCMB MR/V028669/1 and MR/R009120/1), EPSRC (EP/R03558X/1), Cambridge Biomedical Research Centre (BRC-1215-20014); Asthma + Lung UK and The Victor Philip Dahdaleh Foundation. SOR is supported by MRC RG90505 and NIHR BRC RG85378. A.P.C and D.R are supported by the Medical Research Council, Metabolic Diseases Unit [MC_UU_0014/1]. BI is supported by ERC Consolidator Grant (No. 819775). EO is supported by MCIN/AEI Ramon y Cajal program (RYC2020-028884-I). RVG is supported by ISCIII P-FIS fellowship (FI17/00045). BIOSTAT-CHF was funded by the European Commission (FP7-242209- BIOSTAT-CHF; and EudraCT 2010-020808-29). CNIC is supported by ISCIII, MCIN, and Pro CNIC Foundation, and is a Severo Ochoa Center of Excellence (CEX2020-001041-S). Additional funding for measurement of GDF15 concentrations provided by Roche Diagnostics.

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Cardiovasc Res. 2024 Dec 31;120(17):2249-2260.

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