Sun Baocun, Zhang Danfang, Zhao Nan, Zhao Xiulan
Department of Pathology, Tianjin Medical University, Tianjin, China.
Department of Pathology, General Hospital of Tianjin Medical University, Tianjin, China.
Oncotarget. 2017 May 2;8(18):30502-30510. doi: 10.18632/oncotarget.8461.
Vasculogenic mimicry (VM) is a functional microcirculation pattern in malignant tumors accompanied by endothelium-dependent vessels and mosaic vessels. VM has been identified in more than 15 solid tumor types and is associated with poor differentiation, late clinical stage and poor prognosis. Classic anti-angiogenic agents do not target endothelium-dependent vessels and are not efficacious against tumors exhibiting VM. Further insight into the molecular signaling that triggers and promotes VM formation could improve anti-angiogenic therapeutics. Recent studies have shown that cancer stem cells (CSCs) and epithelium-to-endothelium transition (EET), a subtype of epithelial-to-mesenchymal transition (EMT), accelerate VM formation by stimulating tumor cell plasticity, remodeling the extracellular matrix (ECM) and connecting VM channels with host blood vessels. VM channel-lining cells originate from CSCs due to expression of EMT inducers such as Twist1, which promote EET and ECM remodeling. Hypoxia and high interstitial fluid pressure in the tumor microenvironment induce a specific type of cell death, linearly patterned programmed cell necrosis (LPPCN), which spatially guides VM and endothelium-dependent vessel networks. This review focuses on the roles of CSCs and EET in VM, and on possible novel anti-angiogenic strategies against alternative tumor vascularization.
血管生成拟态(VM)是恶性肿瘤中一种功能性微循环模式,伴有内皮依赖性血管和镶嵌血管。VM已在超过15种实体瘤类型中被发现,且与肿瘤低分化、临床晚期及预后不良相关。经典抗血管生成药物并不作用于内皮依赖性血管,对表现出VM的肿瘤无效。进一步深入了解触发和促进VM形成的分子信号传导,可能会改善抗血管生成治疗。最近的研究表明,癌症干细胞(CSCs)以及上皮-间质转化(EMT)的一种亚型——上皮-内皮转化(EET),通过刺激肿瘤细胞可塑性、重塑细胞外基质(ECM)以及将VM通道与宿主血管相连,加速了VM的形成。VM通道内衬细胞起源于CSCs,这是由于Twist1等EMT诱导因子的表达促进了EET和ECM重塑。肿瘤微环境中的缺氧和高组织间液压力会诱导一种特定类型的细胞死亡,即线性模式程序性细胞坏死(LPPCN),它在空间上引导VM和内皮依赖性血管网络。本文综述聚焦于CSCs和EET在VM中的作用,以及针对替代性肿瘤血管生成的可能新型抗血管生成策略。