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首页> 外文期刊>The Journal of Experomental Medicine >On-site education of VEGF-recruited monocytes improves their performance as angiogenic and arteriogenic accessory cells
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On-site education of VEGF-recruited monocytes improves their performance as angiogenic and arteriogenic accessory cells

机译:VEGF诱导的单核细胞的现场教育可改善其作为血管生成和动脉生成辅助细胞的性能

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Adult neovascularization relies on the recruitment of monocytes to the target organ or tumor and functioning therein as a paracrine accessory. The exact origins of the recruited monocytes and the mechanisms underlying their plasticity remain unclear. Using a VEGF-based transgenic system in which genetically tagged monocytes are conditionally summoned to the liver as part of a VEGF-initiated angiogenic program, we show that these recruited cells are derived from the abundant pool of circulating Ly6Chi monocytes. Remarkably, however, upon arrival at the VEGF-induced organ, but not the naive organ, monocytes undergo multiple phenotypic and functional changes, endowing them with enhanced proangiogenic capabilities and, importantly, with a markedly increased capacity to remodel existing small vessels into larger conduits. Notably, monocytes do not differentiate into long-lived macrophages, but rather appear as transient accessory cells. Results from transfers of presorted subpopulations and a novel tandem transfer strategy ruled out selective recruitment of a dedicated preexisting subpopulation or onsite selection, thereby reinforcing active reprogramming as the underlying mechanism for improved performance. Collectively, this study uncovered a novel function of VEGF, namely, on-site education of recruited “standard” monocytes to become angiogenic and arteriogenic professional cells, a finding that may also lend itself for a better design of angiogenic therapies.
机译:成人新血管形成依赖于单核细胞向靶器官或肿瘤的募集并在其中起旁分泌辅助作用。募集的单核细胞的确切来源及其可塑性的机制仍不清楚。使用基于VEGF的转基因系统,其中有基因标记的单核细胞作为VEGF启动的血管生成程序的一部分有条件地传到肝脏,我们显示这些募集的细胞来自循环的Ly6Chi单核细胞丰富的池。然而,值得注意的是,单核细胞到达VEGF诱导的器官而非幼稚器官后,会经历多种表型和功能变化,赋予它们增强的促血管生成能力,重要的是,其显着增强的能力可将现有的小血管重塑成较大的导管。值得注意的是,单核细胞不会分化成长寿命的巨噬细胞,而是表现为短暂的辅助细胞。预分类亚群转移和新颖的串联转移策略的结果排除了选择性募集专门的预先存在的亚群或现场选择的可能性,从而加强了主动重编程作为改善性能的基本机制。这项研究共同揭示了VEGF的新功能,即对募集的“标准”单核细胞进行现场教育,使其成为具有血管生成和动脉生成作用的专业细胞,这一发现也可能有助于更好地设计血管生成疗法。

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