Adventitial lymphatic capillary expansion impacts on plaque T cell accumulation in atherosclerosis

Timo Rademakers, Emiel P. C. van der Vorst, Isabelle T. M. N. Daissormont, Jeroen J. T. Otten, Kosta Theodorou, Thomas L. Theelen, Marion Gijbels, Andrey Anisimov, Harri Nurmi, Jan H. N. Lindeman, Andreas Schober, Sylvia Heeneman, Kari Alitalo, Erik A. L. Biessen*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

During plaque progression, inflammatory cells progressively accumulate in the adventitia, paralleled by an increased presence of leaky vasa vasorum. We here show that next to vasa vasorum, also the adventitial lymphatic capillary bed is expanding during plaque development in humans and mouse models of atherosclerosis. Furthermore, we investigated the role of lymphatics in atherosclerosis progression. Dissection of plaque draining lymph node and lymphatic vessel in atherosclerotic ApoE(-/-)mice aggravated plaque formation, which was accompanied by increased intimal and adventitial CD3(+) T cell numbers. Likewise, inhibition of VEGF-C/D dependent lymphangiogenesis by AAV aided gene transfer of hVEGFR3-Ig fusion protein resulted in CD3(+) T cell enrichment in plaque intima and adventitia. hVEGFR3-Ig gene transfer did not compromise adventitial lymphatic density, pointing to VEGF-C/D independent lymphangiogenesis. We were able to identify the CXCL12/CXCR4 axis, which has previously been shown to indirectly activate VEGFR3, as a likely pathway, in that its focal silencing attenuated lymphangiogenesis and augmented T cell presence. Taken together, our study not only shows profound, partly CXCL12/CXCR4 mediated, expansion of lymph capillaries in the adventitia of atherosclerotic plaque in humans and mice, but also is the first to attribute an important role of lymphatics in plaque T cell accumulation and development.

Original languageEnglish
Article number45263
Number of pages10
JournalScientific Reports
Volume7
DOIs
Publication statusPublished - 28 Mar 2017

Keywords

  • APOLIPOPROTEIN E-DEFICIENT
  • DENDRITIC CELLS
  • VASA VASORUM
  • IN-VIVO
  • MICE
  • LESIONS
  • LYMPHANGIOGENESIS
  • PROMOTES
  • INFLAMMATION
  • PROGRESSION

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