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May 8, 2026ZooKeys0 citationsOpen Access

From morphology to function: endothelial dysfunction, inflammation, and aortic stiffness as a new paradigm in the assessment of aortic diseases

IZI. Zheleva-KyuchukovaTokuda Hospital

Key Result

Incorporating functional and biological markers, such as endothelial dysfunction and aortic stiffness, alongside morphological assessment improves risk stratification for thoracic aortic diseases.

Key Points

  • This research aims to shift the assessment of thoracic aortic disease from purely morphological parameters to include functional and biological markers.
  • Evaluated a range of markers including endothelial dysfunction, inflammation, and aortic stiffness in patients with thoracic aortic disease.
  • Analyzed the relationship between these markers and adverse aortic and cardiovascular events.
  • Utilized clinical and experimental evidence to support the findings.
  • Aortic stiffness was associated with increased left ventricular afterload and compromised diastolic coronary perfusion.
  • Chronic inflammation and endothelial dysfunction significantly predicted myocardial ischemia and heart failure with preserved ejection fraction.
  • Incorporating functional assessments improved individualized risk prediction for patients without advanced aortic dilatation.

PICO

P
Population
Thoracic aortic disease

Limitations

  • Limited access to equipment, lack of reimbursement, and the absence of widely accepted national reference values hinder the wider implementation of pulse wave velocity (PWV) in routine clinical practice.

Abstract

Thoracic aortic disease has traditionally been assessed using morphological parameters, primarily maximal aortic diameter. However, accumulating experimental and clinical evidence indicates that this approach is insuf cient for individualised risk prediction. Endothelial dysfunction, chronic in ammation, and immune activation play central roles in the pathogenesis of aortic disease, driving vascular wall remodelling and functional instability that are not captured by static imaging. Increased aortic stiffness has emerged as a clinically measurable integrator of these processes, re ecting vascular ageing, in ammatory burden, and impaired mechanotransduction. By affecting central hemodynamics, aortic stiffness increases left ventricular afterload, compromises diastolic coronary perfusion, and contributes to myocardial ischemia and the development of heart failure with preserved ejection fraction. Incorporating functional and biological markers alongside morphological assessment may improve risk strati cation and help explain the occurrence of adverse aortic and cardiovascular events in patients without advanced aortic dilatation.

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Cite This Study

I. Zheleva-Kyuchukova (2026) conducted a review in Thoracic aortic disease. Incorporating functional and biological markers, such as endothelial dysfunction and aortic stiffness, alongside morphological assessment improves risk stratification for thoracic aortic diseases.

synapsesocial.com/papers/69fd7d4abfa21ec5bbf05cfchttps://doi.org/10.3897/bgcardio.32.e188343
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