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Targeting platelet-derived CXCL12 impedes arterial thrombosis

  • Julian Leberzammer
  • , Stijn M. Agten
  • , Xavier Blanchet
  • , Rundan Duan
  • , Hans Ippel
  • , Remco T.A. Megens
  • , Christian Schulz
  • , Maria Aslani
  • , Johan Duchene
  • , Yvonne Döring
  • , Natalie J. Jooss
  • , Pengyu Zhang
  • , Richard Brandl
  • , Konstantin Stark
  • , Wolfgang Siess
  • , Kerstin Jurk
  • , Johan W.M. Heemskerk
  • , Tilman M. Hackeng
  • , Kevin H. Mayo
  • , Christian Weber
  • Philipp von Hundelshausen

Research output: Contribution to journalArticlepeer-review

Abstract

The prevention and treatment of arterial thrombosis continue to be clinically challenging, and understanding the relevant molecular mechanisms in detail may facilitate the quest to identify novel targets and therapeutic approaches that improve protection from ischemic and bleeding events. The chemokine CXCL12 augments collagen-induced platelet aggregation by activating its receptor CXCR4. Here we show that inhibition of CXCR4 attenuates platelet aggregation induced by collagen or human plaque homogenate under static and arterial flow conditions by antagonizing the action of platelet-secreted CXCL12. We further show that platelet-specific CXCL12 deficiency in mice limits arterial thrombosis by affecting thrombus growth and stability without increasing tail bleeding time. Accordingly, neointimal lesion formation after carotid artery injury was attenuated in these mice. Mechanistically, CXCL12 activated via CXCR4 a signaling cascade involving Bruton's tyrosine kinase (Btk) that led to integrin αIIbβ3 activation, platelet aggregation, and granule release. The heterodimeric interaction between CXCL12 and CCL5 can inhibit CXCL12-mediated effects as mimicked by CCL5-derived peptides such as [VREY]4. An improved variant of this peptide, i[VREY]4, binds to CXCL12 in a complex with CXCR4 on the surface of activated platelets, thereby inhibiting Btk activation and preventing platelet CXCL12-dependent arterial thrombosis. In contrast to standard antiplatelet therapies such as aspirin or P2Y12 inhibition, i[VREY]4 reduced CXCL12-induced platelet aggregation and yet did not prolong in vitro bleeding time. We provide evidence that platelet-derived CXCL12 is involved in arterial thrombosis and can be specifically targeted by peptides that harbor potential therapeutic value against atherothrombosis.

Original languageEnglish (US)
Pages (from-to)2691-2705
Number of pages15
JournalBlood
Volume139
Issue number17
DOIs
StatePublished - Apr 28 2022

Bibliographical note

Funding Information:
J.L. was supported by the DZHK (German Centre for Cardiovascular Research). This work was supported by the National Science Foundation (BIR-961477), the University of Minnesota Medical School and the Minnesota Medical Foundation (K.H.M.), and by the Deutsche Forschungsgemeinschaft, SFB1123, A2 (P.v.H.), A7 (C.S. and K.S.), Z1 (R.T.A.M.), and INST 409/150-1 FUGG (C.W. and R.T.A.M.). N.J.J. received funding from the European Union's Horizon 2020 research and innovation program under Marie Sklodowska-Curie grant agreement No. 766118. At Maastricht University, C.W. is Van de Laar professor of atherosclerosis, and K.H.M. is Van de Laar professor of structural biology. K.H.M. is also grateful to the Ludwig-Maximillian-University Center for Advanced Study and the Alexander von Humboldt Foundation for support during his 2019 sabbatical stay at the Ludwig-Maximillian-University. P.Z. is supported by the European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant agreement TICARDIO No. 813409. The graphical abstract was created with BioRender.com.

Publisher Copyright:
© 2022 American Society of Hematology

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