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Healthcare Management in Cardio-Oncology, Clinical Strategies and Future Perspectives: A Narrative Review
Vincenzo Quagliariello1, Massimiliano Berretta2, Fabrizio Maurea3
1Division of Cardiology, Istituto Nazionale Tumori-IRCCS-Fondazione G. Pascale of Naples, 80131 Naples, Italy.
Insights
Cardio-oncology manages cancer treatment's cardiovascular risks. Early detection and cardioprotective strategies are vital for improving patient outcomes and survivorship.
Area of Science:
- Cardiology
- Oncology
- Cardio-oncology
Background:
- Cancer survival rates have increased, leading to more therapy-related cardiovascular complications.
- Cardiotoxicity is driven by oxidative stress, endothelial dysfunction, immune injury, and metabolic issues.
Purpose of the Study:
- To review risk stratification, care pathways, and emerging challenges in cardio-oncology.
- To highlight the importance of a continuum-of-care approach for managing cardiotoxicity.
Main Methods:
- Narrative review of risk-stratification models and care pathways.
- Emphasis on validated risk scores, biomarkers, and imaging for surveillance.
- Discussion of modifiable cardiometabolic factors and emerging technologies.
Main Results:
- Effective management integrates risk assessment, surveillance, and cardioprotective therapy.
- Validated risk scores (HFA/ICOS, Mayo) and early detection methods are crucial.
- Modifiable factors like obesity and insulin resistance impact cardiotoxicity risk.
Conclusions:
- A multidisciplinary, continuum-of-care approach is essential for cardio-oncology.
- Precision prevention and survivorship care should address cardiometabolic health.
- Addressing challenges like digital health integration and access is key for future care.
Abstract:
The growing overlap between cardiovascular disease and cancer has made cardio-oncology a key subspecialty in modern oncology care. Improved cancer survival has increased the burden of therapy-related cardiovascular complications, including heart failure, arrhythmias, ischemic events, and vascular toxicity, driven by oxidative stress, endothelial dysfunction, immune-mediated injury, and metabolic vulnerability. Effective management requires a continuum-of-care approach, integrating baseline risk assessment, biomarker- and imaging-guided surveillance, and timely cardioprotective therapy without compromising cancer treatment. Key strategies include validated risk scores (HFA/ICOS, Mayo), early detection of subclinical dysfunction via troponin, natriuretic peptides, and strain imaging, and proactive cardioprotective agents such as ACE inhibitors, beta-blockers, SGLT2 inhibitors, and statins in high-risk patients. This narrative review summarizes risk-stratification models, structured care pathways, and multidisciplinary hub-and-spoke networks linking specialized centers with community oncology services. It emphasizes modifiable cardiometabolic factors, obesity, insulin resistance, NAFLD, sarcopenia, and chronic inflammation, which heighten cardiotoxicity risk and should guide precision prevention and survivorship care. We also address emerging challenges, including the integration of digital health, tele-monitoring, and AI-based decision support, and the shift toward value-based reimbursement models, highlighting persistent barriers such as data privacy, infrastructure gaps, and inequitable access to specialized care.
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