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Updated: May 11, 2026

Scanning Electron Microscopy of Macerated Tissue to Visualize the Extracellular Matrix
Published on: June 14, 2016
The pathogenesis of cardiac fibrosis
Ping Kong1, Panagiota Christia, Nikolaos G Frangogiannis
1The Wilf Family Cardiovascular Research Institute, Department of Medicine (Cardiology), Albert Einstein College of Medicine, 1300 Morris Park Avenue Forchheimer G46B, Bronx, NY, 10461, USA.
Insights
Cardiac fibrosis, marked by excess matrix proteins, impairs heart function. This review details cellular players and molecular signals in fibrosis, highlighting potential reversibility and the need for anti-fibrotic therapies.
Area of Science:
- Cardiovascular Biology
- Pathology
- Molecular Medicine
Background:
- Cardiac fibrosis involves extracellular matrix accumulation, leading to heart dysfunction.
- It's a key feature in various cardiac diseases.
Purpose of the Study:
- To review cellular effectors and molecular pathways in cardiac fibrosis pathogenesis.
- To explore potential therapeutic strategies targeting fibrosis.
Main Methods:
- Literature review of experimental and clinical studies.
- Analysis of cellular and molecular mechanisms driving fibrosis.
Main Results:
- Activated myofibroblasts are primary effectors, but other cells (monocytes, lymphocytes, mast cells, vascular cells, cardiomyocytes) also contribute.
- Key mediators include inflammatory cytokines, ROS, endothelin-1, RAAS, and growth factors like TGF-β and PDGF.
Conclusions:
- Cardiac fibrosis is driven by a complex interplay of cells and molecular mediators.
- Evidence suggests cardiac fibrosis may be reversible, necessitating further research into anti-fibrotic treatments.
Abstract:
Cardiac fibrosis is characterized by net accumulation of extracellular matrix proteins in the cardiac interstitium, and contributes to both systolic and diastolic dysfunction in many cardiac pathophysiologic conditions. This review discusses the cellular effectors and molecular pathways implicated in the pathogenesis of cardiac fibrosis. Although activated myofibroblasts are the main effector cells in the fibrotic heart, monocytes/macrophages, lymphocytes, mast cells, vascular cells and cardiomyocytes may also contribute to the fibrotic response by secreting key fibrogenic mediators. Inflammatory cytokines and chemokines, reactive oxygen species, mast cell-derived proteases, endothelin-1, the renin/angiotensin/aldosterone system, matricellular proteins, and growth factors (such as TGF-β and PDGF) are some of the best-studied mediators implicated in cardiac fibrosis. Both experimental and clinical evidence suggests that cardiac fibrotic alterations may be reversible. Understanding the mechanisms responsible for initiation, progression, and resolution of cardiac fibrosis is crucial to design anti-fibrotic treatment strategies for patients with heart disease.
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