Association between angiopoietin-2 and functional cardiac remodeling in hemodialysis patients with normal left

Ana Aécia Alexandrino de Oliveira1,2, Thaís Alexandrino de Oliveira2, Larissa Alexandrino de Oliveira3

  • 1Medical Sciences Postgraduate Program, Universidade de Fortaleza - UNIFOR, Fortaleza, Ceará, Brazil.

Insights

Endothelium biomarker Angiopoietin-2 (AGPT2) is linked to worse cardiac function in hemodialysis patients. This association is significantly influenced by high blood pressure and diabetes mellitus, indicating a complex interplay in cardiac remodeling.

Area of Science:

  • Cardiology
  • Nephrology
  • Biomarkers

Background:

  • Cardiac remodeling is a key process in heart failure development.
  • Endothelium-related biomarkers play a role in cardiovascular health.
  • Hemodialysis patients are at increased risk for cardiac complications.

Purpose of the Study:

  • To investigate the association between endothelium-related biomarkers and cardiac remodeling in hemodialysis patients.
  • To explore how high blood pressure and diabetes mellitus modulate these associations.
  • To identify specific biomarkers linked to cardiac dysfunction in this population.

Main Methods:

  • Cross-sectional study involving adult hemodialysis patients with normal left ventricular ejection fraction.
  • Correlation analysis between endothelium-related biomarkers (including Angiopoietin-2) and echocardiographic indices (LV mass index, LVEF, global longitudinal strain, mitral E/e', aortic root diameter).
  • Statistical adjustment for potential confounders and analysis of interaction effects of blood pressure and diabetes mellitus.

Main Results:

  • Angiopoietin-2 (AGPT2) was inversely correlated with global longitudinal strain and directly with E/e'.
  • After adjustment, AGPT2 remained significantly associated with global longitudinal strain.
  • Blood pressure and diabetes mellitus independently moderated the AGPT2-global longitudinal strain association, with significant effects observed at lower blood pressure thresholds in diabetic patients.

Conclusions:

  • Higher AGPT2 levels are associated with impaired cardiac function (lower global longitudinal strain) in hemodialysis patients.
  • The impact of AGPT2 on cardiac remodeling is significantly influenced by the presence of high blood pressure and diabetes mellitus.
  • These findings highlight the complex interplay of vascular health, metabolic status, and cardiac remodeling in hemodialysis patients.

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