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Updated: Sep 2, 2025

Capturing the Cardiac Injury Response of Targeted Cell Populations via Cleared Heart Three-Dimensional Imaging
Published on: March 17, 2020
Evidence for reciprocal network interactions between injured hearts and cancer
Melisa N Guler1,2,3, Nathalie M Tscheiller2,3, Maria Sabater-Molina4
1Faculty of Medicine, University of Campania Luigi Vanvitelli, Caserta, Italy.
Insights
Heart failure and cancer share pathological links, increasing mortality. Understanding their bilateral interaction may reveal biomarkers and therapeutic targets for better patient management.
Area of Science:
- Cardiology
- Oncology
- Molecular Biology
Background:
- Heart failure (HF) and cancer are leading causes of death in middle-aged adults.
- HF patients exhibit increased cancer risk, and cancer treatments can cause cardiotoxicity.
- Cancer patients may experience cardiovascular dysfunction even before therapy, necessitating cardioprotective strategies.
Purpose of the Study:
- To explore the bidirectional relationship between cardiac injury and cancer development.
- To discuss shared pathological mechanisms and treatments for HF and cancer.
- To review evidence of communication between cardiac injury and cancer via secreted factors.
Main Methods:
- Literature review of epidemiological, case-control, and preclinical studies.
- Analysis of molecular mechanisms underlying HF-cancer interactions.
- Examination of signaling networks and secreted factors (secretomes).
Main Results:
- Evidence suggests a strong link between HF and increased cancer risk.
- Cancer therapies can induce cardiotoxicity, leading to HF.
- Preclinical studies indicate a bilateral interaction between cardiac injury and cancer development.
Conclusions:
- Shared pathological events and signaling pathways connect HF and cancer.
- Understanding these interactions is crucial for identifying biomarkers and therapeutic targets.
- Secreted factors play a role in the bilateral connection between cardiac injury and cancer.
Abstract:
Heart failure (HF) and cancer are responsible for 50% of all deaths in middle-aged people. These diseases are tightly linked, which is supported by recent epidemiological studies and case control studies, demonstrating that HF patients have a higher risk to develop cancer such as lung and breast cancer. For HF patients, a one-size-fits-all clinical management strategy is not effective and patient management represents a major economical and clinical burden. Anti-cancer treatments-mediated cardiotoxicity, leading to HF have been extensively studied. However, recent studies showed that even before the initiation of cancer therapy, cancer patients presented impairments in the cardiovascular functions and exercise capacity. Thus, the optimal cardioprotective and surveillance strategies should be applied to cancer patients with pre-existing HF. Recently, preclinical studies addressed the hypothesis that there is bilateral interaction between cardiac injury and cancer development. Understanding of molecular mechanisms of HF-cancer interaction can define the profiles of bilateral signaling networks, and identify the disease-specific biomarkers and possibly therapeutic targets. Here we discuss the shared pathological events, and some treatments of cancer- and HF-mediated risk incidence. Finally, we address the evidences on bilateral connection between cardiac injury (HF and early cardiac remodeling) and cancer through secreted factors (secretoms).
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