Kyrilos Sadaka
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Biography and Research Information
OverviewAI-generated summary
Kyrilos Sadaka's research investigates the role of cardiac fibroblasts in the extracellular matrix homeostasis and remodeling of the myocardium. His work explores mechanisms of acute anthracycline toxicity in human cardiac fibroblasts, focusing on cell death-independent pathways. Sadaka's publications also address the metabolomics of volatile organic compounds (VOCs) in infectious diseases. He has a recent publication in 2026 and has a total of three publications with 10 citations, and an h-index of 1. Sadaka has collaborated with researchers from the University of Arkansas at Little Rock, including Zoya Faruqui and Mohammad Goodarzi.
Metrics
- h-index: 1
- Publications: 3
- Citations: 10
Selected Publications
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Cardiac fibroblasts in extracellular matrix homeostasis and remodeling (2026)
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Uncovering a novel cell death-independent mechanism of acute anthracycline toxicity in human cardiac fibroblasts (2026)
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Metabolomics of volatile organic compounds (VOCs) in infectious diseases (2024)
Collaboration Network
Top Collaborators
- Uncovering a novel cell death-independent mechanism of acute anthracycline toxicity in human cardiac fibroblasts
- Cardiac fibroblasts in extracellular matrix homeostasis and remodeling
- Metabolomics of volatile organic compounds (VOCs) in infectious diseases
- Metabolomics of volatile organic compounds (VOCs) in infectious diseases
- Metabolomics of volatile organic compounds (VOCs) in infectious diseases
- Metabolomics of volatile organic compounds (VOCs) in infectious diseases
- Metabolomics of volatile organic compounds (VOCs) in infectious diseases
- Uncovering a novel cell death-independent mechanism of acute anthracycline toxicity in human cardiac fibroblasts
- Uncovering a novel cell death-independent mechanism of acute anthracycline toxicity in human cardiac fibroblasts
- Uncovering a novel cell death-independent mechanism of acute anthracycline toxicity in human cardiac fibroblasts
- Cardiac fibroblasts in extracellular matrix homeostasis and remodeling
- Cardiac fibroblasts in extracellular matrix homeostasis and remodeling
- Cardiac fibroblasts in extracellular matrix homeostasis and remodeling
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