ArticleThe American journal of pathology2024
Cardiac Atrophy, Dysfunction, and Metabolic Impairments: A Cancer-Induced Cardiomyopathy Phenotype.
Article in The American journal of pathology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Pancreatic Cancer Disrupts Circadian Patterns of Gene Expression in Cardiorespiratory Muscles.Journal of cachexia, sarcopenia and muscle · 2026Article
- Pathogenesis, Diagnostic Pathways, and New Therapeutic and Nutritional Strategies for Pancreatic Cancer-Associated Cachexia.Cancers · 2026Review
- Exosomal miR-320c: A Novel Biomarker for Atrial Cardiomyopathy.Journal of cardiovascular translational research · 2025Article
- Development of an efficient mice model of cancer-associated cardiac cachexia.Animal models and experimental medicine · 2025Article
- Explainable machine learning for neoplasms diagnosis via electrocardiograms: an externally validated study.Cardio-oncology (London, England) · 2025Article
- Insights Into Heart-Tumor Interactions in Heart Failure.Circulation research · 2025Review
- Long-term cardiac MRI follow up of MANTICORE (Multidisciplinary Approach to Novel Therapies in Cardio-Oncology REsearch).Cardio-oncology (London, England) · 2025Article
- Exercise pre-conditioning prevents vascular toxicity caused by infusion of 5-fluorouracil in male rats.American journal of cancer research · 2025Article
Corrections and comments
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Authors and funding
16 authors.
Funding
Abstract
Muscle atrophy and weakness are prevalent features of cancer. Although extensive research has characterized skeletal muscle wasting in cancer cachexia, limited studies have investigated how cardiac structure and function are affected by therapy-naive cancer. Herein, orthotopic, syngeneic models of epithelial ovarian cancer and pancreatic ductal adenocarcinoma, and a patient-derived pancreatic xenograft model, were used to define the impact of malignancy on cardiac structure, function, and metabolism. Tumor-bearing mice developed cardiac atrophy and intrinsic systolic and diastolic dysfunction, with arterial hypotension and exercise intolerance. In hearts of ovarian tumor-bearing mice, fatty acid-supported mitochondrial respiration decreased, and carbohydrate-supported respiration increased-showcasing a substrate shift in cardiac metabolism that is characteristic of heart failure. Epithelial ovarian cancer decreased cytoskeletal and cardioprotective gene expression, which was paralleled by down-regulation of transcription factors that regulate cardiomyocyte size and function. Patient-derived pancreatic xenograft tumor-bearing mice show altered myosin heavy chain isoform expression-also a molecular phenotype of heart failure. Markers of autophagy and ubiquitin-proteasome system were upregulated by cancer, providing evidence of catabolic signaling that promotes cardiac wasting. Together, two cancer types were used to cross-validate evidence of the structural, functional, and metabolic cancer-induced cardiomyopathy, thus providing translational evidence that could impact future medical management strategies for improved cancer recovery in patients.
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Registered trials
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