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Published on: December 3, 2021
Cardiotrophin-1: expression in experimental myocardial infarction and potential role in post-MI wound healing
Darren H Freed1, Michael C Moon, Anna M Borowiec
1Institute of Cardiovascular Sciences, St. Boniface General Hospital Research Centre, Faculty of Medicine, University of Manitoba, Winnipeg, Manitoba, Canada.
Insights
Cardiotrophin-1 (CT-1) is elevated after heart attack and promotes scar formation by increasing fibroblast migration, proliferation, and collagen synthesis, crucial for cardiac repair.
Area of Science:
- Cardiovascular Biology
- Cytokine Signaling
- Cardiac Fibrosis
Background:
- Cardiotrophin-1 (CT-1), an IL-6 family cytokine, is linked to heart disease.
- Elevated CT-1 levels are observed in patients with ischemic and valvular heart disease.
- CT-1 is known to induce cardiomyocyte hypertrophy in vitro.
Purpose of the Study:
- To investigate CT-1 expression in post-myocardial infarction (MI) rat hearts.
- To determine the effects of CT-1 on cultured adult rat cardiac fibroblasts.
- To elucidate CT-1's role in cardiac fibroblast activation and infarct scar formation.
Main Methods:
- Measured CT-1 expression in rat hearts post-MI using immunohistochemistry.
- Assessed CT-1's impact on cardiac fibroblast signaling pathways (Jak/STAT, MAPK, PI3K, Src) via phosphorylation.
- Quantified fibroblast protein and DNA synthesis, collagen production (PICP), and cell migration.
Main Results:
- CT-1 expression was significantly upregulated in the infarct zone from 24 hours to 8 weeks post-MI.
- CT-1 stimulated rapid phosphorylation of key signaling molecules (Jak, STATs, MAPK, Akt) in cardiac fibroblasts.
- CT-1 promoted fibroblast proliferation, protein synthesis, collagen production, and cell migration, dependent on specific signaling pathways.
Conclusions:
- CT-1, expressed post-MI, plays a critical role in infarct scar formation and cardiac remodeling.
- CT-1 orchestrates key processes in scar development: fibroblast migration, proliferation, and collagen synthesis.
- Further research is needed to identify CT-1 inducers and its interactions within the cardiac wound healing cascade.
Abstract:
Cardiotrophin-1 (CT-1), a member of the IL-6 family of cytokines, has been shown to be elevated in the serum of patients with ischemic heart disease and valvular heart disease, and induces cardiomyocyte hypertrophy in vitro. We investigated expression of CT-1 in post-MI rat heart and the effect of CT-1 on cultured primary adult rat cardiac fibroblasts. Elevated CT-1 expression was observed in the infarct zone at 24 h and continued through 2, 4 and 8 weeks post-MI, compared to sham-operated animals. CT-1 induced rapid phosphorylation of Jak, Jak2, STAT1, STAT3, p42/44 MAPK and Akt in cultured adult cardiac fibroblasts. CT-1 induced cardiac fibroblast protein synthesis and proliferation. Protein and DNA synthesis were dependent on activation of Jak/STAT, MEK1/2, PI3K and Src pathways as evidenced by decreased 3H-leucine and 3H-thymidine incorporation after pretreatment with AG490, PD98059, LY294002 and genistein respectively. Furthermore, CT-1 treatment increased procollagen-1-carboxypropeptide (PICP) synthesis, a marker of mature collagen synthesis. CT-1 induced cell migration of rat cardiac fibroblasts. Our results suggest that CT-1, as expressed in post-MI heart, may play an important role in infarct scar formation and ongoing remodeling of the scar. CT-1 was able to initiate each of the processes considered important in the formation of infarct scar including cardiac fibroblast migration as well as fibroblast proliferation and collagen synthesis. Further work is required to determine factors that induce CT-1 expression and interplay with other mediators of cardiac infarct wound healing in the setting of acute cardiac ischemia and chronic post-MI heart failure.
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