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Published on: June 9, 2014
Dysregulated osteoprotegerin/RANK ligand/RANK axis in clinical and experimental heart failure
Thor Ueland1, Arne Yndestad, Erik Øie
1Research Institute for Internal Medicine, Medical Department, Rikshospitalet University Hospital, Oslo, Norway. thor.ueland@medisin.uio.no
Insights
The OPG/RANK/RANKL axis, involved in bone metabolism, is implicated in heart failure (HF) pathogenesis. Increased expression of these mediators in heart tissue and serum suggests they may be therapeutic targets for HF.
Area of Science:
- Cardiovascular Research
- Immunology
- Bone Metabolism
Background:
- Persistent inflammation is linked to heart failure (HF) development.
- Osteoprotegerin (OPG), RANK, and RANKL are TNF superfamily members regulating bone and immune responses.
- The OPG/RANK/RANKL axis role in HF pathogenesis was investigated.
Purpose of the Study:
- To investigate the involvement of the OPG/RANK/RANKL axis in heart failure (HF) pathogenesis.
- To explore the OPG/RANK/RANKL axis in both experimental and clinical HF models.
Main Methods:
- Gene expression analysis in a rat postinfarction HF model.
- Protein level analysis and immunohistochemistry in human HF myocardial tissue.
- Systemic expression analysis of RANKL and OPG in human HF patients.
- In vitro study of RANKL's effect on matrix metalloproteinase activity in human fibroblasts.
Main Results:
- Increased OPG, RANK, and RANKL gene expression in ischemic and non-ischemic heart tissue in rat HF.
- Elevated myocardial OPG, RANK, and RANKL protein levels in human HF, localized to cardiomyocytes.
- Increased systemic RANKL and OPG levels in human HF correlated with disease severity.
- RANKL enhanced matrix metalloproteinase activity, suggesting a role in LV dysfunction.
Conclusions:
- The OPG/RANK/RANKL axis, known for bone homeostasis, may play a role in HF pathogenesis.
- These findings identify potential new therapeutic targets for heart failure.
Background:
Persistent inflammation appears to play a role in the development of heart failure (HF). Osteoprotegerin (OPG), the receptor activator of nuclear factor-kappaB (RANK), and RANK ligand (RANKL) are newly discovered members of the tumor necrosis factor superfamily that are critical regulators in bone metabolism but appear also to be involved in immune responses. We hypothesized that the OPG/RANK/RANKL axis could be involved in the pathogenesis of heart failure (HF), and this hypothesis was investigated in both experimental and clinical studies.
Methods And Results:
Our main and novel findings were as follows: (1) In a rat model of postinfarction HF, we found persistently increased gene expression of OPG, RANK, and RANKL in the ischemic part of the left ventricle (LV) and, for OPG, in the nonischemic part that involved both noncardiomyocyte and in particular cardiomyocyte tissue. (2) Enhanced myocardial protein levels of OPG, RANK, and RANKL, in particular, were also seen in human HF, and using immunohistochemistry, we localized these mediators to cardiomyocytes within the LV in both experimental and clinical HF. (3) In human HF, we also found increased systemic expression of RANKL (T cells and serum) and OPG (serum), with increasing levels according to functional, hemodynamic, and neurohormonal disease severity. (4) RANKL increased total matrix metalloproteinase activity in human fibroblasts, which indicates a matrix-degrading net effect and suggests a potential mechanism by which enhanced RANKL expression in HF may contribute to LV dysfunction.
Conclusions:
These findings suggest a potential role for known mediators of bone homeostasis in the pathogenesis of HF and possibly represents new targets for therapeutic intervention in this disorder.
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