Circulating GDF11 exacerbates myocardial injury in mice and associates with increased infarct size in humans.

Details

Serval ID
serval:BIB_61F93877E926
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Circulating GDF11 exacerbates myocardial injury in mice and associates with increased infarct size in humans.
Journal
Cardiovascular research
Author(s)
Kraler S., Balbi C., Vdovenko D., Lapikova-Bryhinska T., Camici G.G., Liberale L., Bonetti N., Canestro C.D., Burger F., Roth A., Carbone F., Vassalli G., Mach F., Bhasin S., Wenzl F.A., Muller O., Räber L., Matter C.M., Montecucco F., Lüscher T.F., Akhmedov A.
ISSN
1755-3245 (Electronic)
ISSN-L
0008-6363
Publication state
Published
Issued date
30/12/2023
Peer-reviewed
Oui
Volume
119
Number
17
Pages
2729-2742
Language
english
Notes
Publication types: Journal Article
Publication Status: ppublish
Abstract
The heart rejuvenating effects of circulating growth differentiation factor 11 (GDF11), a transforming growth factor-β superfamily member that shares 90% homology with myostatin (MSTN), remains controversial. Here, we aimed to probe the role of GDF11 in acute myocardial infarction (MI), a frequent cause of heart failure and premature death during ageing.
In contrast to endogenous Mstn, myocardial Gdf11 declined during the course of ageing and was particularly reduced following ischaemia/reperfusion (I/R) injury, suggesting a therapeutic potential of GDF11 signalling in MI. Unexpectedly, boosting systemic Gdf11 by recombinant GDF11 delivery (0.1 mg/kg body weight over 30 days) prior to myocardial I/R augmented myocardial infarct size in C57BL/6 mice irrespective of their age, predominantly by accelerating pro-apoptotic signalling. While intrinsic cardioprotective signalling pathways remained unaffected by high circulating GDF11, targeted transcriptomics and immunomapping studies focusing on GDF11-associated downstream targets revealed attenuated Nkx2-5 expression confined to CD105-expressing cells, with pro-apoptotic activity, as assessed by caspase-3 levels, being particularly pronounced in adjacent cells, suggesting an indirect effect. By harnessing a highly specific and validated liquid chromatography-tandem mass spectrometry-based assay, we show that in prospectively recruited patients with MI circulating GDF11 but not MSTN levels incline with age. Moreover, GDF11 levels were particularly elevated in those at high risk for adverse outcomes following the acute event, with circulating GDF11 emerging as an independent predictor of myocardial infarct size, as estimated by standardized peak creatine kinase-MB levels.
Our data challenge the initially reported heart rejuvenating effects of circulating GDF11 and suggest that high levels of systemic GDF11 exacerbate myocardial injury in mice and humans alike. Persistently high GDF11 levels during ageing may contribute to the age-dependent loss of cardioprotective mechanisms and thus poor outcomes of elderly patients following acute MI.
Keywords
Aged, Animals, Humans, Mice, Aging/metabolism, Bone Morphogenetic Proteins, Growth Differentiation Factors/genetics, Growth Differentiation Factors/metabolism, Heart, Heart Injuries/complications, Heart Injuries/metabolism, Mice, Inbred C57BL, Myocardial Infarction/complications, Myocardial Infarction/metabolism, Acute myocardial infarction, Ageing, Biomarker discovery, GDF11, Proteomics, Risk prediction
Pubmed
Open Access
Yes
Create date
29/09/2023 15:02
Last modification date
16/01/2024 8:12
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