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淋巴瘤血管生成由非经典信号通路调控。

Lymphoma Angiogenesis Is Orchestrated by Noncanonical Signaling Pathways.

机构信息

Translational Tumorimmunology, Max Delbrück Center for Molecular Medicine, Berlin, Germany.

Department of Medicine A, and Cluster of Excellence EXC 1003, University Hospital Münster, Münster, Germany.

出版信息

Cancer Res. 2020 Mar 15;80(6):1316-1329. doi: 10.1158/0008-5472.CAN-19-1493. Epub 2020 Jan 13.

Abstract

Tumor-induced remodeling of the microenvironment relies on the formation of blood vessels, which go beyond the regulation of metabolism, shaping a maladapted survival niche for tumor cells. In high-grade B-cell lymphoma, angiogenesis correlates with poor prognosis, but attempts to target established proangiogenic pathways within the vascular niche have been inefficient. Here, we analyzed -driven B-cell lymphoma-induced angiogenesis in mice. A few lymphoma cells were sufficient to activate the angiogenic switch in lymph nodes. A unique morphology of dense microvessels emerged without obvious tip cell guidance and reliance on blood endothelial cell (BEC) proliferation. The transcriptional response of BECs was inflammation independent. Conventional HIF1α or Notch signaling routes prevalent in solid tumors were not activated. Instead, a nonconventional hypersprouting morphology was orchestrated by lymphoma-provided VEGFC and lymphotoxin (LT). Interference with VEGF receptor-3 and LTβ receptor signaling pathways abrogated lymphoma angiogenesis, thus revealing targets to block lymphomagenesis. SIGNIFICANCE: In lymphoma, transcriptomes and morphogenic patterns of the vasculature are distinct from processes in inflammation and solid tumors. Instead, LTβR and VEGFR3 signaling gain leading roles and are targets for lymphomagenesis blockade. http://cancerres.aacrjournals.org/content/canres/80/6/1316/F1.large.jpg.

摘要

肿瘤诱导的微环境重塑依赖于血管的形成,这超出了代谢的调节,为肿瘤细胞塑造了一个适应不良的生存环境。在高级别 B 细胞淋巴瘤中,血管生成与预后不良相关,但靶向血管龛内已建立的促血管生成途径的尝试效率低下。在这里,我们分析了驱动的 B 细胞淋巴瘤在小鼠中诱导的血管生成。少量淋巴瘤细胞足以激活淋巴结中的血管生成开关。在没有明显尖端细胞引导和依赖于血液内皮细胞(BEC)增殖的情况下,出现了密集微血管的独特形态。BEC 的转录反应与炎症无关。在实体瘤中普遍存在的传统 HIF1α或 Notch 信号途径没有被激活。相反,由淋巴瘤提供的 VEGFC 和淋巴毒素(LT)协调了一种非传统的过度发芽形态。干扰 VEGF 受体-3 和 LTβ 受体信号通路可阻断淋巴瘤血管生成,从而揭示了阻断淋巴瘤发生的靶点。意义:在淋巴瘤中,血管的转录组和形态发生模式与炎症和实体瘤中的过程明显不同。相反,LTβR 和 VEGFR3 信号转导发挥主导作用,是阻断淋巴瘤发生的靶点。

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