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Published on: January 7, 2015
Cardiac toxicity of high-dose chemotherapy
P Morandi1, P A Ruffini, G M Benvenuto
1Divisione Oncologia Medica, Ospedale San Bortolo, Vicenza, Italy. paolomorandi1@tin.it
Insights
High-dose chemotherapy can cause cardiac toxicity, particularly with cyclophosphamide regimens. Early detection and prevention strategies are crucial for managing this serious complication in cancer patients.
Area of Science:
- Cardiology
- Oncology
- Pharmacology
Background:
- Cardiac toxicity is a rare but serious complication of high-dose (HD) chemotherapy.
- Limited knowledge exists regarding the incidence, severity, and mechanisms of chemotherapy-induced cardiac toxicity.
Purpose of the Study:
- To systematically review and appraise evidence on cardiac toxicity associated with HD chemotherapy over the past 30 years.
- To summarize current understanding of risk factors, diagnostic approaches, and prevention strategies.
Main Methods:
- Systematic literature review of studies published in the last 30 years.
- Appraisal of published evidence on cardiac toxicity related to HD chemotherapy regimens.
Main Results:
- HD cyclophosphamide regimens are most frequently linked to cardiac toxicity, with decreasing incidence over time.
- Dosage, administration, and drug interactions are key risk factors. Unexpected severe cardiotoxicity observed with melphalan and fludarabine regimens.
- Clinical examination and ECG are primary prevention tools; 2D echocardiography is recommended for anthracycline-exposed patients.
Conclusions:
- While clinical measures aid prevention, predictive value of cardiologic exams is limited.
- New imaging techniques and biomarkers show promise for early detection and risk identification of cardiac toxicity.
- Ongoing research focuses on mitigating long-term cardiac effects of chemotherapy, particularly anthracyclines.
Abstract:
Cardiac toxicity is an uncommon but potentially serious complication of high-dose (HD) chemotherapy and little is known about incidence, severity and underlying mechanisms. We have systematically reviewed the literature of the last 30 years to summarize and appraise the published evidence on cardiac toxicity associated with HD chemotherapy. HD cyclophosphamide-containing regimens have been most commonly associated with cardiac toxicity, with a progressively decreasing incidence over time. Dosage, application regimens and coadministration of other chemotherapeutic agents emerged as risk factors. While cardiac toxicity has been rarely associated with other cytotoxic drugs, an unexpected incidence of severe cardiotoxicity resulted from reduced-intensity conditioning regimens containing melphalan and fludarabine. Predictive value of cardiologic examination of patients is limited, and patients with a slight depression of cardiac performance could tolerate HD chemotherapy. Clinical examination, resting electrocardiography and dosage adjustment in overweight patients remain the mainstay of prevention, with bidimensional echocardiography (2D echo) for patients with a history of anthracycline exposure. Strategies to decrease the long-term negative impact of anthracycline administration on cardiac performance are being investigated. New 2D echo-based techniques and circulating markers of cardiac function hold promise for allowing identification of patients at high risk for and early diagnosis of cardiac toxicity.
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