Neutrophil methylmalonic acid promotes microthrombus formation and adverse cardiac remodeling post-myocardial
Yige Liu1,2, Jiaxin Wang1,2, Hengxuan Cai1,2
1Department of Cardiology, Second Affiliated Hospital of Harbin Medical University, Harbin, China.
Background:
Neutrophils contribute critically to adverse cardiac remodeling following acute myocardial infarction (AMI), yet the precise regulatory mechanisms remain unclear. Our previous findings identified methylmalonic acid (MMA) as a novel cardiovascular prognostic biomarker. Thus, we aimed to investigate whether neutrophil-derived MMA mediates neutrophil extracellular trap (NET) formation and subsequent adverse cardiac remodeling post-MI, and to elucidate potential underlying mechanisms.
Methods:
Serum and neutrophil MMA levels were measured in humans and mice with AMI. Neutrophil-specific Mmut knockout mice (S100a8Cre Mmutflox/flox) were treated with GSK484 (PAD4 inhibitor) or DNase I (NET-degrading agent) to evaluate the role of neutrophil-derived MMA in cardiac NET formation and adverse remodeling after MI. High-throughput RNA sequencing was performed on isolated neutrophils to identify molecular mechanisms.
Results:
Compared with patients with angina, patients with AMI displayed significantly increased MMA levels in serum and neutrophils, particularly pronounced in neutrophils. Elevated NET markers were observed in thrombus tissue from patients with AMI with higher neutrophil MMA. Similarly, Mmut knockout mice exhibited increased NET formation, greater microthrombus burden, and worsened cardiac dysfunction 4 weeks after MI compared with S100a8Cre controls. NETosis-targeted interventions (GSK484 or DNase I) substantially reduced microthrombus formation and adverse cardiac remodeling, especially in Mmut knockout mice. Integrated transcriptomic and multifactorial analyses revealed that activation of the neutrophil IL-6/JAK1/STAT3 signaling pathway plays a key role in MMA-induced NETosis, which was largely compromised by the treatment with an IL-6 neutralizing antibody. Moreover, colchicine, an FDA-approved anti-inflammatory agent, significantly inhibited neutrophilic IL-6 expression, NETosis, and microthrombus formation, thereby attenuating post-MI cardiac remodeling against the hazards of neutrophil MMA elevation.
Conclusions:
Neutrophil-derived MMA promotes NETosis and microthrombus formation through IL-6 activation, contributing to maladaptive cardiac remodeling post-MI. These findings identify neutrophil MMA as a novel immunometabolic trigger driving NET-mediated adverse cardiac remodeling and suggest colchicine as a promising therapeutic strategy to prevent heart failure post-MI, particularly in patients with elevated neutrophil MMA contents.
Insights
Neutrophil methylmalonic acid (MMA) drives neutrophil extracellular trap (NET) formation and cardiac damage after myocardial infarction (MI). Colchicine treatment reduces NETs and improves cardiac remodeling, offering a potential therapy for heart failure post-MI.
Area of Science:
- Immunometabolism
- Cardiovascular Research
- Neutrophil Biology
Background:
- Neutrophils play a key role in cardiac remodeling post-acute myocardial infarction (AMI).
- Methylmalonic acid (MMA) is a novel prognostic biomarker for cardiovascular diseases.
- The role of neutrophil-derived MMA in mediating adverse cardiac remodeling post-MI is not well understood.
Purpose of the Study:
- To investigate if neutrophil-derived MMA mediates neutrophil extracellular trap (NET) formation and adverse cardiac remodeling post-MI.
- To elucidate the underlying molecular mechanisms of MMA-induced NETosis.
- To evaluate colchicine as a potential therapeutic strategy.
Main Methods:
- Measured serum and neutrophil MMA levels in human and mouse models of AMI.
- Utilized neutrophil-specific Mmut knockout mice and treated with PAD4 inhibitor (GSK484) or DNase I.
- Performed high-throughput RNA sequencing on isolated neutrophils and employed IL-6 neutralizing antibodies.
Main Results:
- Patients with AMI showed significantly higher MMA levels in serum and neutrophils compared to angina patients.
- Mmut knockout mice exhibited increased NET formation, microthrombus burden, and cardiac dysfunction post-MI.
- Neutrophil MMA promoted NETosis via IL-6/JAK1/STAT3 signaling; colchicine inhibited IL-6, NETosis, and cardiac remodeling.
Conclusions:
- Neutrophil-derived MMA promotes NETosis and microthrombus formation through IL-6 activation, contributing to maladaptive cardiac remodeling post-MI.
- Neutrophil MMA is identified as a novel immunometabolic trigger for NET-mediated adverse cardiac remodeling.
- Colchicine emerges as a promising therapeutic strategy to prevent heart failure post-MI in individuals with elevated neutrophil MMA.
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