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Tumor-infiltrating dendritic cell precursors recruited by a beta-defensin contribute to vasculogenesis under the influence of Vegf-A. | LitMetric

AI Article Synopsis

  • The study investigates how immune cells, specifically dendritic cell (DC) precursors, contribute to tumor growth and blood vessel formation (vasculogenesis) in cancer.
  • Researchers found that a protein called beta-defensin-29 attracts DC precursors to tumors, which enhances tumor blood supply and growth, especially when the tumor also produces vascular endothelial growth factor-A (Vegf-A).
  • A new type of leukocyte expressing markers from both DCs and blood vessels was identified in ovarian tumors, and it was shown that these DCs not only migrate to tumor vessels but also help form new blood vessels, highlighting the cooperative roles of beta-defensins and Vegf-A in this process.

Article Abstract

The involvement of immune mechanisms in tumor angiogenesis is unclear. Here we describe a new mechanism of tumor vasculogenesis mediated by dendritic cell (DC) precursors through the cooperation of beta-defensins and vascular endothelial growth factor-A (Vegf-A). Expression of mouse beta-defensin-29 recruited DC precursors to tumors and enhanced tumor vascularization and growth in the presence of increased Vegf-A expression. A new leukocyte population expressing DC and endothelial markers was uncovered in mouse and human ovarian carcinomas coexpressing Vegf-A and beta-defensins. Tumor-infiltrating DCs migrated to tumor vessels and independently assembled neovasculature in vivo. Bone marrow-derived DCs underwent endothelial-like differentiation ex vivo, migrated to blood vessels and promoted the growth of tumors expressing high levels of Vegf-A. We show that beta-defensins and Vegf-A cooperate to promote tumor vasculogenesis by carrying out distinct tasks: beta-defensins chemoattract DC precursors through CCR6, whereas Vegf-A primarily induces their endothelial-like specialization and migration to vessels, which is mediated by Vegf receptor-2.

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Source
http://dx.doi.org/10.1038/nm1097DOI Listing

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