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Blockade of D114 inhibits turnout growth by promoting non-productive angiogenesis

机译:通过促进非生产性血管生成来阻止D114抑制道岔增长

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Tumour growth requires accompanying expansion of the host vasculature, with tumour progression often correlated with vascular density. Vascular endothelial growth factor (VEGF) is the best-characterized inducer of tumour angiogenesis. We report that VEGF dynamically regulates tumour endothelial expression of Delta-like ligand 4 (D114), which was previously shown to be absolutely required for normal embryonic vascular development. To define D114 function in tumour angiogenesis, we manipulated this pathway in murine tumour models using several approaches. Here we show that blockade resulted in markedly increased tumour vascularity, associated with enhanced angiogenic sprouting and branching. Paradoxically, this increased vascularity was nonproductive-as shown by poor perfusion and increased hypoxia, and most importantly, by decreased tumour growth^even for tumours resistant to anti-VEGF therapy. Thus, VEGF-induced D]14 acts as a negative regulator of tumour angiogenesis; its blockade results in a striking uncoupling of tumour growth from vessel density, presenting a novel therapeutic approach even for tumours resistant to anti-VEGF therapies.
机译:肿瘤生长需要伴随宿主脉管系统的膨胀,肿瘤进展通常与血管密度相关。血管内皮生长因子(VEGF)是肿瘤血管生成的最佳表征诱导剂。我们认为VEGF动态调节倾角的δ状配体4(D114)的内皮表达,其先前被证明是常规胚胎血管发育的绝对所必需的。为了在肿瘤血管生成中定义D114功能,我们使用几种方法操纵鼠肿瘤模型中的该途径。在这里,我们表明阻断导致肿瘤血管性显着增加,与增强的血管生成芽和分支相关。矛盾的是,这种增加的血管性是非培养 - 如缺乏缺乏和缺氧增加所示,并且最重要的是,即使对于抗VEGF治疗的肿瘤甚至肿瘤生长也降低。因此,VEGF诱导的d] 14用作肿瘤血管生成的负调节剂;其封锁导致血管密度引起肿瘤生长的突出突出,甚至甚至抗VEGF疗法的肿瘤均匀的治疗方法。

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