Why the study?
Many patients with breast cancer require cardiotoxic anthracycline-based chemotherapy, prompting the need to assess the early cardiotoxic effects of doxorubicin using CMR imaging.
Does cardiac magnetic resonance imaging detect early cardiotoxic effects of doxorubicin-containing chemotherapy in patients with breast cancer?
Does cardiac magnetic resonance imaging detect early cardiotoxic effects of doxorubicin-containing chemotherapy in patients with breast cancer?
CMR detects significant early changes in biventricular function and global strain following doxorubicin-based chemotherapy in breast cancer patients, which may assist in early initiation of preventive cardiac strategies.
Early CMR changes appear after doxorubicin in breast cancer; leaves open whether they improve monitoring or outcomes.
Objectives: Many patients with breast cancer (BC) require cardiotoxic anthracycline-based chemotherapy. We intended to assess the early cardiotoxic effects of doxorubicin utilizing cardiac magnetic resonance (CMR) imaging. Material and Methods: Forty-nine patients including 21 otherwise healthy females with BC at a mean age (±SD) of 47.62 ± 9.07 years and 28 normal controls at a mean age (±SD) of 45.18 ± 4.29 years were recruited. They underwent CMR and transthoracic echocardiography at baseline and 7 days after four biweekly cycles of doxorubicin and cyclophosphamide. Biventricular functional, volumetric, global strain, and tissue characterization findings were analyzed and compared with those of 28 controls. Results: In post-chemotherapy CMR, 4 patients (19.04%), three symptomatic and one asymptomatic, exhibited evidence of doxorubicin cardiotoxicity. Significant differences in biventricular ejection fraction, left ventricular end-systolic volume index, and all 3D global strain values were noted after chemotherapy in comparison with the baseline (all P < 0.05). More than half of the study population showed a significant change in all right ventricular global strain values. One patient (4.76%) exhibited evidence of diffuse myocardial edema in post-chemotherapy CMR, and 3 patients (14.28%) showed myocardial fibrosis. The study participants were clinically followed up for 4–10 months (mean = 7 months). Overall, 8 patients (38.09%) complained of dyspnea on exertion and fatigue on follow-up. None of the CMR markers was associated with the development of symptoms. Conclusion: Our investigation revealed striking changes in CMR parameters in the follow-up of BC patients treated with cardiotoxic chemotherapy. These exclusive CMR features assist in the early initiation of preventive cardiac strategies.
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Safaei et al. (2021) studied this question.
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