4.5 Article

Integrin-driven monocyte to dendritic cell conversion in modified extracorporeal photochemotherapy

期刊

CLINICAL AND EXPERIMENTAL IMMUNOLOGY
卷 175, 期 3, 页码 449-457

出版社

WILEY
DOI: 10.1111/cei.12231

关键词

DC; integrins; monocyte; transimmunization

资金

  1. NIH [5 T32 AR07016-35]
  2. NIH cancer center grant [3 P30 CA 16359-28S1]
  3. NY Cardiac Foundation

向作者/读者索取更多资源

Due to clinical efficacy and safety profile, extracorporeal photochemotherapy (ECP) is a commonly used cell treatment for patients with cutaneous T cell lymphoma (CTCL) and graft-versus-host disease (GVHD). The capacity of ECP to induce dendritic antigen-presenting cell (DC)-mediated selective immunization or immunosuppression suggests a novel mechanism involving pivotal cell signalling processes that have yet to be clearly identified as related to this procedure. In this study we employ two model systems of ECP to dissect the role of integrin signalling and adsorbed plasma proteins in monocyte-to-DC differentiation. We demonstrate that monocytes that were passed through protein-modified ECP plates adhered transiently to plasma proteins, including fibronectin, adsorbed to the plastic ECP plate and activated signalling pathways that initiate monocyte-to-DC conversion. Plasma protein adsorption facilitated 542 +/- 47% differentiation, while fibronectin supported 298 +/- 72% differentiation, as detected by DC phenotypic expression of membrane CD80 and CD86, as well as CD36, human leucocyte antigen D-related (HLA-DR) and cytoplasmic CD83. Further, we demonstrate the ability of fibronectin and other plasma proteins to act through cell adhesion via the ubiquitous arginine-glycine-aspartic (RGD) motif to drive monocyte-to-DC differentiation, with high-density RGD substrates supporting 541 +/- 58% differentiation via V3 and 51integrin signalling. Our results demonstrate that plasma protein binding integrins and plasma proteins operate through specific binding domains to induce monocyte-to-DC differentiation in ECP, providing a mechanism that can be harnessed to enhance ECP efficacy.

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