间充质干细胞
血管内皮生长因子
生物
血管生成
分泌物
间质细胞
免疫学
骨髓
癌症研究
细胞生物学
内分泌学
血管内皮生长因子受体
作者
Tyler U. Faircloth,S. Temple,Rebecca D. Parr,Alan Tucker,Devi Rajan,Peiman Hematti,Subra Kugathasan,Raghavan Chinnadurai
标识
DOI:10.1093/stmcls/sxae040
摘要
Abstract Mesenchymal Stromal Cells (MSCs) are investigated as cellular therapeutics for Inflammatory Bowel Diseases and associated Perianal Fistula, although consistent efficacy remains a concern. Determining host factors that modulate MSCs’ potency including their secretion of angiogenic & wound healing factors, immunosuppression and anti-inflammatory properties are important determinants of their functionality. We investigated the mechanisms that regulate the secretion of angiogenic & wound healing factors and immune suppression of human bone marrow MSCs. Secretory analysis of MSCs focusing on eighteen angiogenic & wound healing secretory molecules identified the most abundancy of Vascular Endothelial Growth Factor-A(VEGF-A). MSC viability and secretion of other angiogenic factors are not dependent on VEGF-A secretion which exclude the autocrine role of VEGF-A on MSC’s fitness. However, combination of inflammatory cytokines IFNγand TNFαreduces MSC’s VEGF-A secretion. To identify the effect of intestinal microvasculature on MSCs’ potency, coculture analysis was performed between Human Large Intestine Microvascular Endothelial Cells(HLMVECs) and human bone marrow derived MSCs. HLMVECs do not attenuate MSCs’ viability despite blocking their VEGF-A secretion. In addition, HLMVECs neither attenuate MSC’s IFNγmediated upregulation of immunosuppressive enzyme Indoleamine 2,3-dioxygenase(IDO) nor abrogate suppression of T cell proliferation despite the attenuation of VEGF-A secretion. We found that HLMVECs express copious amounts of endothelial nitric oxide synthase (eNOS) and mechanistic analysis showed that pharmacological blocking reverses HLMVEC mediated attenuation of MSC’s VEGF-A secretion. Together these results suggest that secretion of VEGF-A and immunosuppression are separable functions of MSCs which are regulated by distinct mechanisms in the host.
科研通智能强力驱动
Strongly Powered by AbleSci AI