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Updated: Jan 26, 2026

Non-chromatographic Purification of Recombinant Elastin-like Polypeptides and their Fusions with Peptides and Proteins from Escherichia coli
Published on: June 9, 2014
Role of elastin peptides and elastin receptor complex in metabolic and cardiovascular diseases
Amandine Wahart1, Thinhinane Hocine1, Camille Albrecht1
1UMR CNRS 7369 MEDyC, SFR CAP-Santé, Université de Reims Champagne-Ardenne, France.
Insights
Elastin-derived peptides are key regulators of the Cardiovascular Continuum, influencing risk factors like hypertension and conditions such as nonalcoholic fatty liver disease. Targeting the Elastin Receptor Complex offers new therapeutic avenues for cardiovascular disease.
Area of Science:
- Cardiovascular Medicine
- Biochemistry
- Aging Research
Background:
- The Cardiovascular Continuum links risk factors to heart disease.
- Vascular stiffness from elastin degradation is a known risk factor.
- Elastin degradation products' role in this continuum was previously unexplored.
Purpose of the Study:
- To investigate the role of elastin-derived peptides in the Cardiovascular Continuum.
- To propose a revisited Cardiovascular Continuum model incorporating these peptides.
- To highlight potential elastin-based therapeutic strategies.
Main Methods:
- Review of existing laboratory data.
- Analysis of the involvement of elastin-derived peptides and the Elastin Receptor Complex.
- Conceptual framework development for a revisited Cardiovascular Continuum.
Main Results:
- Elastin-derived peptides are bioactive regulators of the Cardiovascular Continuum.
- These peptides amplify cardiovascular risk factors (e.g., diabetes, hypertension).
- They also exacerbate vascular alterations (atherothrombosis, calcification) and liver conditions.
Conclusions:
- Elastin-derived peptides and the Elastin Receptor Complex are central to cardiovascular disease progression.
- A revisited Cardiovascular Continuum model is proposed.
- Elastin-based pharmacology presents a promising future therapeutic direction.
Abstract:
The Cardiovascular Continuum describes a sequence of events from cardiovascular risk factors to end-stage heart disease. It includes conventional pathologies affecting cardiovascular functions such as hypertension, atherosclerosis or thrombosis and was traditionally considered from the metabolic point of view. This Cardiovascular Continuum, originally described by Dzau and Braunwald, was extended by O'Rourke to consider also the crucial role played by degradation of elastic fibers, occurring during aging, in the appearance of vascular stiffness, another deleterious risk factor of the continuum. However, the involvement of the elastin degradation products, named elastin-derived peptides, to the Cardiovascular Continuum progression has not been considered before. Data from our laboratory and others clearly showed that these bioactive peptides are central regulators of this continuum, thereby amplifying appearance and evolution of cardiovascular risk factors such as diabetes or hypertension, of vascular alterations such as atherothrombosis and calcification, but also nonalcoholic fatty liver disease and nonalcoholic steatohepatitis. The Elastin Receptor Complex has been shown to be a crucial actor in these processes. We propose here the participation of these elastin-derived peptides and of the Elastin Receptor Complex in these events, and introduce a revisited Cardiovascular Continuum based on their involvement, for which elastin-based pharmacological strategies could have a strong impact in the future.
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