Diagnostic Strategies for Early Recognition of Cancer Therapeutics-Related Cardiac Dysfunction
Carlos R Manrique1, Michael Park2, Nidhish Tiwari2
1Division of Cardiology, Montefiore Medical Center, Albert Einstein College of Medicine, Bronx, NY, USA.
Abstract:
Cardiovascular toxicity in the form of cardiac dysfunction continues to be an obstacle for patients with cancer. Survival and quality of life of cancer survivors are frequently affected by increased incidence of cardiovascular disease. The involvement of the cardiovascular system by primary or secondary malignancies, as well as its dysfunction secondary to the administration of antineoplastics, has led to the development of a new discipline called Cardio-Oncology, an exciting cardiology subspecialty with more questions than answers and as a result an enormous opportunity for research in the field. Multidisciplinary efforts have been focused on the prevention, diagnosis, and treatment of cancer therapeutics-related cardiovascular dysfunction (CTRCD). This review article will focus on the early diagnosis of left ventricular dysfunction associated with chemotherapy. Currently, the identification of cardiac toxicity associated with cancer treatment is the cornerstone for critical decisions regarding anticancer therapy and cardioprotective strategies. Its early detection, especially in subclinical phases, allows immediate intervention to prevent further impairment of the myocardium and other cardiovascular structures. The most significant published studies were selected for this revision, providing an updated document for the health professionals involved in the care of patients with cancer. We examined the current evidence and recommendations for biochemical and noninvasive diagnostic techniques, including their specific role for identification of CTRCD. Traditional and advanced imaging modalities, used alone or in combination with cardiovascular biomarkers, are essential for the recognition of cardiotoxicity during cancer therapy. Evolving basic and clinical research are focused on the development of more sensitive and specific diagnostic tools and for the recognition of cardiac toxicity.
Insights
Early detection of chemotherapy-induced cardiac dysfunction is crucial for cancer patients. Identifying subclinical left ventricular dysfunction allows timely intervention, improving survival and quality of life for cancer survivors.
Area of Science:
- Cardiology
- Oncology
- Cardio-Oncology
Background:
- Cardiovascular toxicity is a significant challenge for cancer patients, impacting survival and quality of life.
- Cancer treatments, including chemotherapy, can cause cardiac dysfunction, necessitating specialized care.
- Cardio-Oncology is an emerging field focused on managing cardiovascular complications in cancer patients.
Purpose of the Study:
- To review the early diagnosis of left ventricular dysfunction related to chemotherapy.
- To highlight the importance of early detection for guiding anticancer therapy and cardioprotective strategies.
- To provide an updated resource for healthcare professionals on identifying cancer therapeutics-related cardiovascular dysfunction (CTRCD).
Main Methods:
- Selection of significant published studies on the early diagnosis of CTRCD.
- Examination of current evidence and recommendations for diagnostic techniques.
- Review of biochemical and noninvasive diagnostic methods, including imaging modalities and biomarkers.
Main Results:
- Early detection of cardiac toxicity, especially in subclinical phases, is vital for intervention.
- Combined use of imaging modalities and cardiovascular biomarkers is essential for recognizing cardiotoxicity.
- Current diagnostic tools are crucial for critical decisions in cancer treatment and cardioprotection.
Conclusions:
- Early diagnosis of chemotherapy-induced left ventricular dysfunction is key to preventing further myocardial damage.
- Multidisciplinary efforts and advanced diagnostic tools are essential in Cardio-Oncology.
- Ongoing research aims to develop more sensitive and specific diagnostic methods for cardiac toxicity.
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