Associations of circulating T-cell subsets with carotid artery stiffness: the multiethnic study of atherosclerosis

Theodore M DeConne1, Petra Buzkova2, Ryan Pewowaruk3

  • 1Section of Gerontology and Geriatric Medicine, Department of Internal Medicine, Wake Forest University School of Medicine, Winston-Salem, North Carolina, United States.

Insights

Pro-inflammatory T-cells, particularly CD4+CD28-CD57+ cells, are linked to increased load-dependent arterial stiffness. This study suggests T-cell subpopulations may contribute to arterial stiffness and related diseases.

Area of Science:

  • Immunology
  • Cardiovascular Science
  • Gerontology

Background:

  • Arterial stiffness, measured by total pulse wave velocity (T-PWV), is a risk factor for age-related diseases.
  • Arterial stiffening has structural (S-PWV) and load-dependent (LD-PWV) components.
  • T-cells are implicated in arterial remodeling and hypertension, but their direct role in arterial stiffness is unclear.

Purpose of the Study:

  • To investigate the cross-sectional associations between peripheral T-cell subpopulations and T-PWV, S-PWV, and LD-PWV.
  • To explore the relationship between specific T-cell subsets and measures of arterial stiffness in a multi-ethnic cohort.

Main Methods:

  • Peripheral T-cells were analyzed using flow cytometry in a subset of the Multi-Ethnic Study of Atherosclerosis (MESA) cohort (n=1,984).
  • Carotid artery stiffness was measured using B-mode ultrasound to calculate T-PWV.
  • A participant-specific exponential model was used to derive S-PWV and LD-PWV.

Main Results:

  • Higher CD4+CD28-CD57+ T-cells were associated with increased LD-PWV (primary analysis).
  • No significant associations were found between other primary T-cell subpopulations and T-PWV or S-PWV.
  • Exploratory analysis revealed associations between various memory and differentiated/senescence-associated CD4+ and CD8+ T-cell subpopulations and increased T-PWV, S-PWV, and LD-PWV.

Conclusions:

  • Novel associations exist between specific T-cell subpopulations (CD4+, CD8+) and measures of arterial stiffness in humans.
  • Pro-inflammatory T-cells, especially CD4+CD28-CD57+, may contribute to arterial stiffness via arterial remodeling and elevated blood pressure.
  • Longitudinal studies are warranted to confirm these findings and explore the dynamic relationship between T-cell changes and arterial stiffness progression.

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