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February 8, 2026European Heart Journal0 citations

Neutrophil-driven inflammation in takotsubo syndrome: insights from patient data and a translational murine model

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KKK KurzERElias RawishUFU Floegel

Key Result

Neutrophil depletion improved LV-EF to 51.4% (p=0.0048) and colchicine to 59.9% (p=0.0001) versus 36.4% in TTS mice, highlighting neutrophil-driven inflammation's role.

Key Points

  • The aim is to understand the role of neutrophil-driven inflammation in Takotsubo syndrome and assess targeted anti-inflammatory treatments.
  • Collected myocardial and blood samples from TTS patients and control subjects on specific days post-diagnosis.
  • Performed immunophenotyping using flow cytometry to analyze inflammatory markers.
  • Induced TTS-like myocardial dysfunction in a murine model using epinephrine.
  • Conducted cardiac MRI to visualize neutrophil infiltration and correlate with left ventricular function.
  • Tested neutrophil depletion and colchicine treatment for effects on cardiac function.
  • TTS patients showed significant increase in neutrophils and activation days after diagnosis.
  • Reversal migration of neutrophils was noted by day 4, indicating prior tissue involvement.
  • Murine model mirrored human findings with neutrophil activation patterns and myocardial infiltration.
  • Neutrophil depletion improved left ventricular ejection fraction significantly compared to controls.
  • Colchicine treatment also enhanced left ventricular function, supporting anti-inflammatory strategies.

Structured PICO

Does neutrophil depletion or colchicine treatment improve left ventricular function in a murine model of Takotsubo syndrome?

P
Population
Human Takotsubo syndrome (TTS) patients (n=30 for blood samples, n=8 for myocardial tissue) and control subjects (n=10), alongside a murine model of epinephrine-induced TTS-like myocardial dysfunction.
I
Intervention
In the murine model: neutrophil depletion via anti-Ly6G antibody or anti-inflammatory colchicine treatment.
C
Comparator
In the murine model: epinephrine-only group.
O
Outcome
Neutrophil count, activation, and myocardial infiltration, as well as left ventricular ejection fraction (LV-EF).surrogate

Neutrophil-driven inflammation plays a key role in Takotsubo syndrome pathophysiology, and targeted anti-inflammatory treatments like colchicine improve left ventricular function in a murine model.

Abstract

Abstract Background Takotsubo syndrome (TTS) is a stress-induced cardiomyopathy characterized by transient left ventricular dysfunction in the absence of acute coronary artery obstruction. Despite its clinical significance, the underlying mechanisms of TTS and its recovery remain insufficiently understood, resulting in a lack of targeted therapies and reliable diagnostic markers. Emerging evidence suggests that inflammatory processes may have a pivotal role in the pathophysiology of TTS. Purpose To characterize inflammatory responses in TTS patients and evaluate targeted anti-inflammatory interventions in vivo. Methods Myocardial tissue (n=8) and blood samples from TTS patients (n=30) were collected on days 1 and 4 following diagnosis and compared with control subjects (n=10). Immunophenotyping was performed by flow cytometry. In the murine model, epinephrine (2.5 mg/kg) was administered intraperitoneally to induce TTS-like myocardial dysfunction. Repetitive cardiac MRI with a fluorine-based tracer for neutrophils was performed to assess spatial and temporal resolution of immune cell infiltration in TTS allowing correlation with left ventricular function. To further investigate the role of neutrophil mediated inflammation in TTS, mice underwent neutrophil depletion via anti-Ly6G antibody or anti-inflammatory colchicine treatment. Results On day 1, TTS patients exhibited a significant increase in neutrophil count and activation in peripheral blood. By day 4, circulating reverse-migrated neutrophils were markedly elevated, indicating significant prior tissue infiltration. Indeed, neutrophils extracted from affected myocardial tissue displayed increased activation (Fig.1). In the murine model similar pattern of neutrophil activation and migration has been found. Cardiac MRI revealed a strong correlation between regions of wall motion abnormalities and neutrophil accumulation, which occurs within minutes following TTS induction (Fig. 2). Neutrophil depletion improved LV-EF (51.4 ± 4.1%, p=0.0048) compared to the epinephrine-only group (36.4 ± 7.3%), which was also reached by anti-inflammatory colchicine treatment (59.9 ± 6.4%, p=0.0001). Conclusion These findings highlight the role of neutrophil-driven inflammation in TTS pathophysiology. Increased neutrophil activation, reverse migration, and early myocardial infiltration suggest a mechanistic link to ventricular dysfunction. In the murine model, neutrophil depletion, and colchicine treatment improved LV function, supporting inflammation as a potential therapeutic target for TTS. Further studies are warranted to evaluate anti-inflammatory strategies in clinical settings.Fig. 1 Human Data Fig. 2 Murine Data

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Cite This Study

Kurz et al. (2025) studied this question. Neutrophil depletion improved LV-EF to 51.4% (p=0.0048) and colchicine to 59.9% (p=0.0001) versus 36.4% in TTS mice, highlighting neutrophil-driven inflammation's role.

synapsesocial.com/papers/698828ab0fc35cd7a8848539https://doi.org/10.1093/eurheartj/ehaf784.4665
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The role of inflammation in takotsubo syndrome: A new therapeutic target?2024 · 12 citations
  2. 2The Role of Inflammation in Takotsubo Syndrome: From Pathogenic Pathways To Imaging Insights and Therapeutic Perspectives2026 · 4 citations
  3. 3Prognostic role of inflammatory markers in Takotsubo Syndrome: insights from the GEIST2025
  4. 4Takotsubo syndrome- when the heart cant't take it: analyzing potential triggers2025
  5. 5Cardiac Troponin release, myocardial function and inflammation in patients with takotsubo syndrome: a cardiac magnetic resonance study2026