6533b873fe1ef96bd12d4495

RESEARCH PRODUCT

Increased Lymphangiogenesis and Lymphangiogenic Growth Factor Expression in Perivascular Adipose Tissue of Patients with Coronary Artery Disease

Ioannis DrososChristos TortopidisGeorgios K. ChalikiasDimitrios TziakasMagdalena L. BochenekThomas MünzelK. BuschmannStavros KonstantinidesStavros KonstantinidesChristian F. VahlRajinikanth GogirajuMaria Del Pilar Ortega CarrilloMaria PavlakiFotios KonstantinouAdriani KourkouliDimitrios MikroulisKatrin Schäfer

subject

Pathologymedicine.medical_specialtymedicine.medical_treatmentgovernment.form_of_governmentlcsh:MedicineAdipose tissue030204 cardiovascular system & hematologyArticle03 medical and health scienceschemistry.chemical_compound0302 clinical medicineFibrosisperivascular adipose tissuemedicineLymphatic vesselhuman030304 developmental biology0303 health sciencesbusiness.industrylcsh:Rcoronary artery disease; human; inflammation; lymphangiogenesis; perivascular adipose tissueGeneral Medicinemedicine.diseaseLymphangiogenesislymphangiogenesisVascular endothelial growth factorLymphatic EndotheliumCytokinemedicine.anatomical_structureLymphatic systemchemistryinflammationgovernmentbusinesscoronary artery disease

description

Experimental and human autopsy studies have associated adventitial lymphangiogenesis with atherosclerosis. An analysis of perivascular lymphangiogenesis in patients with coronary artery disease is lacking. Here, we examined lymphangiogenesis and its potential regulators in perivascular adipose tissue (PVAT) surrounding the heart (C-PVAT) and compared it with PVAT of the internal mammary artery (IMA-PVAT). Forty-six patients undergoing coronary artery bypass graft surgery were included. Perioperatively collected C-PVAT and IMA-PVAT were analyzed using histology, immunohistochemistry, real time PCR, and PVAT-conditioned medium using cytokine arrays. C-PVAT exhibited increased PECAM-1 (platelet endothelial cell adhesion molecule 1)-positive vessel density. The number of lymphatic vessels expressing lymphatic vessel endothelial hyaluronan receptor-1 or podoplanin was also elevated in C-PVAT and associated with higher inflammatory cell numbers, increased intercellular adhesion molecule 1 (ICAM1) expression, and fibrosis. Significantly higher expression of regulators of lymphangiogenesis such as vascular endothelial growth factor (VEGF)-C, VEGF-D, and VEGF receptor-3 was observed in C-PVAT compared to IMA-PVAT. Cytokine arrays identified angiopoietin-2 as more highly expressed in C-PVAT vs. IMA-PVAT. Findings were confirmed histologically and at the mRNA level. Stimulation of human lymphatic endothelial cells with recombinant angiopoietin-2 in combination with VEGF-C enhanced sprout formation. Our study shows that PVAT surrounding atherosclerotic arteries exhibits more extensive lymphangiogenesis, inflammation, and fibrosis compared to PVAT surrounding a non-diseased vessel, possibly due to local angiopoietin-2, VEGF-C, and VEGF-D overexpression.

https://doi.org/10.3390/jcm8071000