Institute of Biology, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands.
J Pathol. 2012 Aug;227(4):431-45. doi: 10.1002/path.4013. Epub 2012 Jul 3.
Inhibition of VEGF signalling effectively suppresses localized tumour growth but accelerates tumour invasiveness and micrometastasis by unknown mechanisms. To study the dynamic and reciprocal interactions between tumour cells and their microenvironment during these processes, we established a xenograft model by injecting tumour cells into the blood circulation of transparent zebrafish embryos. This reproducibly results in rapid simultaneous formation of a localized tumour and experimental micrometastasis, allowing time-resolved imaging of both processes at single-cell resolution within 1 week. The tumour vasculature was initiated de novo by remodelling of primitive endothelial cells into a functional network. Roles of myeloid cells in critical tumourigenesis steps such as vascularization and invasion were revealed by genetic and pharmaceutical approaches. We discovered that the physiological migration of neutrophils controlled tumour invasion by conditioning the collagen matrix and forming the metastatic niche, as detected by two-photon confocal microscopy and second harmonic generation. Administration of VEGFR inhibitors blocked tumour vascularization and a localized tumour growth but enhanced migration of neutrophils, which in turn promoted tumour invasion and formation of micrometastasis. This demonstrates the in vivo cooperation between VEGF signalling and myeloid cells in metastasis and provides a new mechanism underlying the recent findings that VEGFR targeting can promote tumour invasiveness.
血管内皮生长因子(VEGF)信号的抑制能有效地抑制局部肿瘤的生长,但通过未知的机制加速肿瘤的侵袭和微转移。为了研究肿瘤细胞与其微环境在这些过程中的动态和相互作用,我们通过将肿瘤细胞注入透明斑马鱼胚胎的血液循环中建立了一个异种移植模型。这可重复性地导致局部肿瘤和实验性微转移的快速同时形成,允许在 1 周内以单细胞分辨率对这两个过程进行时间分辨成像。肿瘤脉管系统是通过原始内皮细胞重塑为功能网络而从头开始形成的。通过遗传和药物方法揭示了髓样细胞在血管生成和侵袭等关键肿瘤发生步骤中的作用。我们发现,中性粒细胞的生理迁移通过调节胶原基质和形成转移龛来控制肿瘤侵袭,这是通过双光子共聚焦显微镜和二次谐波产生检测到的。VEGFR 抑制剂的给药阻断了肿瘤血管生成和局部肿瘤生长,但增强了中性粒细胞的迁移,进而促进了肿瘤的侵袭和微转移的形成。这证明了 VEGFR 信号与髓样细胞在转移中的体内合作,并为最近发现的 VEGFR 靶向治疗可以促进肿瘤侵袭性提供了一个新的机制。