Unique sensitivities to cytokine regulated expression of adhesion molecules in human heart-derived endothelial cells

R M McDouall1, M W Farrar, S Khan

  • 1NHLI, Department of Cardiothoracic Surgery, Imperial College School of Medicine, Royal Brompton and Harefield NHS Trust, Middlesex, UK.

Insights

Coronary endothelial cells show varied adhesion molecule responses to inflammation. Heart microvascular and coronary artery cells are more sensitive to TNFalpha and IL-1beta than aortic root cells, impacting immune cell binding.

Area of Science:

  • Cardiovascular Biology
  • Immunology
  • Cellular Biology

Background:

  • Endothelial cell adhesion molecules are critical in inflammation and transplant rejection.
  • Differential expression of these molecules in the coronary tree to cytokines is not well understood.

Purpose of the Study:

  • To investigate the differential expression of VCAM-1, E-selectin, and ICAM-1 on human endothelial cells from the aortic root, coronary artery, and heart microvasculature.
  • To determine the response of these cells to inflammatory cytokines TNFalpha and IL-1beta.

Main Methods:

  • Flow cytometry was used to analyze adhesion molecule expression on cultured human aortic root (HAEC), coronary artery (HCAEC), and heart microvascular (HHMEC) endothelial cells.
  • Cells were stimulated with varying concentrations of TNFalpha and IL-1beta.

Main Results:

  • HCAEC and HHMEC exhibited higher constitutive VCAM-1 and E-selectin levels than HAEC.
  • HCAEC and HHMEC showed significantly greater sensitivity to TNFalpha stimulation compared to HAEC.
  • IL-1beta induced similar patterns but was less potent; prolonged expression was noted in HHMEC.
  • Increased peripheral blood mononuclear cell (PBMC) binding was observed on HCAEC and HHMEC.

Conclusions:

  • Endothelial cells from different coronary regions display distinct basal and cytokine-induced adhesion molecule expression patterns.
  • These regional differences may influence inflammatory responses and immune cell interactions within the coronary vasculature.

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