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February 8, 2026European Heart Journal0 citations

Cardiovascular implications of CAR-T cell therapy: insights from a regional cardio-oncology program

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FGF GuerraVCValeria CetorettaAFAlice Frangione

Key Result

CAR-T therapy induced cardiovascular complications in 30% of patients, with pre-treatment LVEF significantly lower in those developing CRS; all recovered ventricular function and survived to discharge

Key Points

  • This study aims to characterize cardiovascular complications associated with CAR-T cell therapy in patients with hematologic malignancies.
  • Conducted a prospective analysis of patients undergoing CAR-T therapy at a regional center.
  • Included patients with refractory hematologic malignancies failing at least two chemotherapy lines.
  • Baseline cardiac assessments conducted using ECG, echocardiography, and biomarkers prior to treatment.
  • Evaluated cardiovascular follow-up at discharge and six months post-therapy.
  • 30% of patients experienced cytokine release syndrome (CRS), with a median onset of 12 days.
  • Cardiovascular dysfunction was noted in patients with higher grades of CRS, requiring management for transient left ventricular dysfunction.
  • Pre-treatment echocardiography showed lower left ventricular ejection fraction in CRS patients compared to non-CRS patients.

Structured PICO

What are the cardiovascular complications of CAR-T cell therapy in patients with refractory hematologic malignancies, and can baseline echocardiography predict these events?

P
Population
21 patients with refractory hematologic malignancies who failed at least two lines of chemotherapy and had prior anthracycline exposure; mean age 62±11 years, 11 males.
I
Intervention
Autologous CAR-T cells (tisagenlecleucel) following conditioning
O
Outcome
Cardiovascular outcomes (including cytokine release syndrome, myocardial dysfunction, and takotsubo syndrome) evaluated at hospital discharge and at six months post-therapysafety

CAR-T cell therapy carries a 30% risk of cardiovascular complications driven by cytokine release syndrome, and lower baseline left ventricular ejection fraction on echocardiography may identify high-risk patients.

Abstract

Abstract Background Chimeric Antigen Receptor (CAR)-T cell therapy represents a major advancement in immuno-oncology, offering promising treatment options for leukemia and lymphoma. However, its potential cardiovascular complications remain insufficiently characterized. Proposed mechanisms include cytokine release syndrome (CRS)-induced myocardial dysfunction, takotsubo cardiomyopathy, and direct CAR-T cell-mediated toxicity. This study examines cardiovascular outcomes in patients undergoing CAR-T therapy at a regional referral center in collaboration with a specialized cardio-oncology team. Methods A prospective analysis was conducted on all consecutive patients referred for CAR-T therapy at our institution since the program’s inception. Eligible patients had refractory hematologic malignancies, had failed at least two lines of chemotherapy, and had prior anthracycline exposure. Baseline cardiac assessments included 12-lead ECG, echocardiography, and biomarker evaluation. Patients received autologous CAR-T cells (tisagenlecleucel) following conditioning. Cardiovascular follow-up was performed at hospital discharge and at six months post-therapy. Results A total of 21 patients (mean age 62±11 years; 11males) underwent CAR-T therapy after a median of two prior treatment lines (range 1-3). CRS occurred in 30% of patients, with a median onset of 12 days (range 7-40). Two patients developed Grade I CRS, managed conservatively. Three patients with Grade 2 CRS required cardioprotective therapy (ACE inhibitors and beta-blockers) for transient left ventricular dysfunction (mean lowest LVEF 44%). One patient experienced Grade IV CRS, leading to takotsubo syndrome and cardiogenic shock on day 4, necessitating vasopressor support and mechanical ventilation. Pre-treatment echocardiography revealed lower baseline left ventricular ejection fraction (LVEF) and right ventricular function in CRS patients compared to non-CRS patients (LVEF 53.6±5.9% vs. 63.2±7.7%, p=0.03; TAPSE 25±4 mm vs. 20±3 mm, p=0.02; S' 0.09±0.01 m/s vs. 0.12±0.02 m/s, p=0.03, Figure 1). Baseline cardiac biomarkers did not predict adverse outcomes. All CRS patients experienced ventricular function recovery and survived to discharge. Six patients succumbed to oncologic progression unrelated to cardiac complications. Conclusions CAR-T therapy carries a notable risk of cardiovascular complications, with 30% of patients requiring specialized cardio-oncology management. Echocardiographic assessment before treatment may help identify high-risk individuals, facilitating early intervention and improved clinical outcomes.

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Cite This Study

Guerra et al. (2025) studied this question. CAR-T therapy induced cardiovascular complications in 30% of patients, with pre-treatment LVEF significantly lower in those developing CRS; all recovered ventricular function and survived to discharge.

synapsesocial.com/papers/698828cb0fc35cd7a8848967https://doi.org/10.1093/eurheartj/ehaf784.4156
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