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Inhibition of Dll4 signalling inhibits tumour growth by deregulating angiogenesis

机译:抑制Dll4信号传导通过抑制血管生成抑制肿瘤生长

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Haploinsufficiency of DII4, a vascular-specific Notch ligand, has shown that it is essential for embryonic vascular development and arteriogenesis(1-3). Mechanistically, it is unclear how the DII4-mediated Notch pathway contributes to complex vascular processes that demand meticulous coordination of multiple signalling pathways. Here we show that DII4-mediated Notch signalling has a unique role in regulating endothelial cell proliferation and differentiation. Neutralizing DII4 with a DII4-selective antibody rendered endothelial cells hyperproliferative, and caused defective cell fate specification or differentiation both in vitro and in vivo. In addition, blocking DII4 inhibited tumour growth in several tumour models. Remarkably, antibodies against DII4 and antibodies against vascular endothelial growth factor (VEGF) had paradoxically distinct effects on tumour vasculature. Our data also indicate that DII4-mediated Notch signalling is crucial during active vascularization, but less important for normal vessel maintenance. Furthermore, unlike blocking Notch signalling globally, neutralizing DII4 had no discernable impact on intestinal goblet cell differentiation(4,5), supporting the idea that DII4-mediated Notch signalling is largely restricted to the vascular compartment. Therefore, targeting DII4 might represent a broadly efficacious and well-tolerated approach for the treatment of solid tumours.
机译:DII4是一种血管特异性的Notch配体,其单倍剂量不足表明它对胚胎血管发育和动脉生成至关重要(1-3)。从机理上讲,尚不清楚DII4介导的Notch途径如何促进复杂的血管过程,而这些过程需要多种信号通路的精心协调。在这里,我们显示DII4介导的Notch信号在调节内皮细胞增殖和分化中具有独特的作用。用DII4选择性抗体中和DII4会使内皮细胞过度增殖,并在体外和体内引起缺陷的细胞命运规范或分化。另外,在多种肿瘤模型中,阻断DII4抑制了肿瘤的生长。值得注意的是,针对DII4的抗体和针对血管内皮生长因子(VEGF)的抗体对肿瘤脉管系统具有矛盾的明显影响。我们的数据还表明,DII4介导的Notch信号在主动血管形成过程中至关重要,但对于正常的血管维护而言则不那么重要。此外,与全局阻断Notch信号不同,中和DII4对肠杯状细胞的分化没有明显的影响(4,5),支持了DII4介导的Notch信号在很大程度上局限于血管腔的想法。因此,靶向DII4可能代表一种广泛有效且耐受性良好的实体瘤治疗方法。

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