Vascular CXCR4 Limits Atherosclerosis by Maintaining Arterial Integrity: Evidence From Mouse and Human Studies

Yvonne Döring, Heidi Noels1, Emiel P C van der Vorst

  • 1From Institute for Cardiovascular Prevention (IPEK), LMU Munich, Germany (Y.D., E.P.C.v.d.V., C.N., V.E., M.D., M.M., Y.J., K.B., R.T.A.M., C.R., O.S., E.T., C.W.); Institute for Molecular Cardiovascular Research (IMCAR), RWTH Aachen University, Germany (H.N., L.P., W.T.); Institute for Cardiovascular Physiology, Vascular Research Centre, Goethe University, Frankfurt am Main, Germany (K.S., R.P.B.); Division of Nephrology and Immunology, RWTH Aachen University Hospital, Germany (B.M.K., P.B.); Cardiovascular Research Institute Maastricht (CARIM), Department of Biochemistry, Maastricht University, the Netherlands (R.T.A.M., R.v.G., T.M.H., C.W.); Academic Medical Center, Department of Pathology and Department of Medical Biochemistry, Amsterdam University, the Netherlands (P.J.H.K., A.v.D.W., E.T.); Department of Vascular and Endovascular Surgery, LMU Munich, Germany (G.G.); DZHK (German Centre for Cardiovascular Research), partner site Frankfurt am Main, Germany (R.P.B.); DZHK (German Centre for Cardiovascular Research), partner site Munich Heart Alliance, Germany (O.S., C.W.); Department of Physiology and Pharmacology, Karolinksa Institutet, Stockholm, Sweden (O.S.); Max-Plank-Institute for Molecular Biomedicine, Münster, Germany (D.V.); Institute for Laboratory Medicine, LMU Munich, Germany (D.T., L.M.H.); and Division of Translational Medicine and Human Genetics, Department of Medicine, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA (D.J.R., D.S.).

Circulation
|April 29, 2017
PubMed
Abstract

Insights

Vascular CXCR4 limits atherosclerosis by maintaining arterial integrity and endothelial barrier function. Genetic variants in CXCR4 are linked to coronary heart disease risk, suggesting therapeutic potential.

Area of Science:

  • Cardiovascular Biology
  • Molecular Medicine
  • Immunology

Background:

  • The CXCL12/CXCR4 axis regulates cell homeostasis and trafficking.
  • Previous studies implied an atheroprotective role for CXCL12/CXCR4 via pharmacological means.
  • The specific roles of CXCR4 in vascular cells and atherosclerosis mechanisms were unclear.

Purpose of the Study:

  • To investigate the role of vascular CXCR4 in atherosclerosis and plaque composition.
  • To elucidate the underlying mechanisms of CXCR4's function in the arterial wall.
  • To assess the association of genetic variants at the CXCR4 locus with coronary heart disease risk.

Main Methods:

  • Generated endothelial cell- or smooth muscle cell (SMC)-specific CXCR4-deficient mice in an atherosclerosis model.
  • Assessed endothelial permeability, leukocyte adhesion, Akt/WNT/β-catenin signaling, VE-cadherin function, vascular tone, and SMC phenotype.
  • Analyzed genetic associations of CXCR4 variants with coronary heart disease and CXCR4 expression in human plaques.

Main Results:

  • Cell-specific CXCR4 deficiency in endothelial cells or SMCs exacerbated atherosclerosis.
  • CXCR4 signaling maintained endothelial barrier function and SMC contractile phenotype.
  • Genetic analysis linked a CXCR4 locus variant (rs2322864 C-allele) to increased coronary heart disease risk and reduced CXCR4 expression in human plaques.

Conclusions:

  • Vascular CXCR4 is crucial for limiting atherosclerosis by preserving arterial integrity and endothelial function.
  • CXCR4 also maintains normal SMC phenotype and vascular reactivity.
  • Targeting vascular CXCR4 may offer novel therapeutic strategies for atherosclerosis.