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June 17, 2026Journal of the American College of Cardiology1,463 citations

Role of Endothelial Shear Stress in the Natural History of Coronary Atherosclerosis and Vascular Remodeling

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YCYiannis S. ChatzizisisACAhmet U. CoskunMJMichael Jonas

Key Result

Low endothelial shear stress promotes the formation and progression of high-risk coronary atherosclerotic plaques through local lipid accumulation and excessive expansive remodeling.

Key Points

  • The aim is to explore the impact of endothelial shear stress on coronary atherosclerosis and the associated vascular remodeling processes.
  • Review of molecular, cellular, and vascular processes related to low endothelial shear stress and atherosclerosis.
  • Analysis of the interplay between hemodynamic conditions and plaque natural history trajectories.
  • Low endothelial shear stress is linked to the formation of an atherogenic endothelial phenotype.
  • Plaques under low shear stress show a tendency for progressive remodeling and lipid accumulation.
  • Understanding these mechanisms may aid in identifying high-risk plaques for better management of coronary patients.

PICO

P
Population
Coronary atherosclerosis and vascular remodeling
E
Exposure / Comparator
Low endothelial shear stress

Abstract

Although the entire coronary tree is exposed to the atherogenic effect of the systemic risk factors, atherosclerotic lesions form at specific arterial regions, where low and oscillatory endothelial shear stress (ESS) occur. Low ESS modulates endothelial gene expression through complex mechanoreception and mechanotransduction processes, inducing an atherogenic endothelial phenotype and formation of an early atherosclerotic plaque. Each early plaque exhibits an individual natural history of progression, regression, or stabilization, which is dependent not only on the formation and progression of atherosclerosis but also on the vascular remodeling response. Although the pathophysiologic mechanisms involved in the remodeling of the atherosclerotic wall are incompletely understood, the dynamic interplay between local hemodynamic milieu, low ESS in particular, and the biology of the wall is likely to be important. In this review, we explore the molecular, cellular, and vascular processes supporting the role of low ESS in the natural history of coronary atherosclerosis and vascular remodeling and indicate likely mechanisms concerning the different natural history trajectories of individual coronary lesions. Atherosclerotic plaques associated with excessive expansive remodeling evolve to high-risk plaques, because low ESS conditions persist, thereby promoting continued local lipid accumulation, inflammation, oxidative stress, matrix breakdown, and eventually further plaque progression and excessive expansive remodeling. An enhanced understanding of the pathobiologic processes responsible for atherosclerosis and vascular remodeling might allow for early identification of a high-risk coronary plaque and thereby provide a rationale for innovative diagnostic and/or therapeutic strategies for the management of coronary patients and prevention of acute coronary syndromes.

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Cite This Study

Chatzizisis et al. (2007) conducted a review in Coronary atherosclerosis and vascular remodeling. Low endothelial shear stress was evaluated. Low endothelial shear stress promotes the formation and progression of high-risk coronary atherosclerotic plaques through local lipid accumulation and excessive expansive remodeling.

synapsesocial.com/papers/6a32bae81a5e8d6dbe65b8bdhttps://doi.org/10.1016/j.jacc.2007.02.059
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