4.5 Article

A Novel CXCR4 antagonist enhances angiogenesis via modifying the ischaemic tissue environment

Journal

JOURNAL OF CELLULAR AND MOLECULAR MEDICINE
Volume 21, Issue 10, Pages 2298-2307

Publisher

WILEY
DOI: 10.1111/jcmm.13150

Keywords

P2G; endothelial progenitor cells; angiogenesis; AMD3100

Funding

  1. Natural Science Foundation of Zhejiang Province [LY16H070005]
  2. Key Science and Technology Development Plan from Wenzhou City [Y20100001, Y20140654]
  3. Research Development Fund of Wenzhou Medical University [QTJ15014, QTJ13007]
  4. Junior Faculty Award from American Diabetes Association [1-13-JF-53]
  5. National Natural Science Foundation of China [91639111, 81573435, 81273509, 81200239, 30971209, 81470061, 81671378]
  6. Key New Drug Development Grants [2012ZX09103-301-016]
  7. Changjiang Innovation Team Program [2010R50042-17]
  8. Starting-Up Fund for Chinese-American Research Institute for Diabetic Complications (Wenzhou Medical University)
  9. Opening Project of Zhejiang Provincial Top Key Discipline of Pharmaceutical Sciences [YKFJ002]
  10. Visiting Scholar Foundation of Key Laboratory of Biorheological Science and Technology (Chongqing University), Ministry of Education [CQKLBST-2015-007]

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Endothelial progenitor cells (EPCs) play a capital role in angiogenesis via directly participating in neo-vessel formation and secreting pro-angiogenic factors. Stromal cell-derived factor 1 (SDF-1) and its receptor CXCR4 play a critical role in the retention and quiescence of EPCs within its niche in the bone marrow. Disturbing the interaction between SDF-1 and CXCR4 is an effective strategy for EPC mobilization. We developed a novel CXCR4 antagonist P2G, a mutant protein of SDF-1b with high antagonistic activity against CXCR4 and high potency in enhancing ischaemic angiogenesis and blood perfusion. However, its direct effects on ischaemic tissue remain largely unknown. In this study, P2G was found to possess a robust capability to promote EPC infiltration and incorporation in neo-vessels, enhance the expression and function of pro-angiogenic factors, such as SDF-1, vascular endothelial growth factor and matrix metalloprotein-9, and activate cell signals involved in angiogenesis, such as proliferating cell nuclear antigen, protein kinase B (Akt), extracellular regulated protein kinases and mammalian target of rapamycin, in ischaemic tissue. Moreover, P2G can attenuate fibrotic remodelling to facilitate the recovery of ischaemic tissue. The capability of P2G in direct augmenting ischaemic environment for angiogenesis suggests that it is a potential candidate for the therapy of ischaemia diseases.

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