Kamei Ryosuke, Tanaka Hiroyoshi Y, Kawano Takao, Morii Chiharu, Tanaka Sayaka, Nishihara Hiroshi, Iwata Caname, Kano Mitsunobu R
Medical Scientist Training Program, Faculty of Medicine, The University of Tokyo, Tokyo, Japan.
Department of Molecular Pathology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
Cancer Sci. 2017 May;108(5):1080-1088. doi: 10.1111/cas.13216. Epub 2017 May 24.
Angiogenesis is a multi-step process that culminates in vascular maturation whereby nascent vessels stabilize to become functional, and mural cells play an essential role in this process. Recent studies have shown that mural cells in tumors also promote and maintain vascular integrity, with wide-reaching clinical implications including the regulation of tumor growth, metastases, and drug delivery. Various regulatory signaling pathways have been hitherto implicated, but whether regulation of Fas-dependent apoptotic mechanisms is involved has not yet been fully investigated. We first compared endothelial FAS staining in human pancreatic ductal adenocarcinomas and colon carcinomas and show that the latter, characterized by lower mural cell coverage of tumor vasculature, demonstrated higher expression of FAS than the former. Next, in an in vitro coculture system of MS-1 and 10T1/2 cells as endothelial and mural cells respectively, we show that mural cells decreased endothelial Fas expression. Then, in an in vivo model in which C26 colon carcinoma cells were inoculated together with MS-1 cells alone or with the further addition of 10T1/2 cells, we demonstrate that mural cells prevented hemorrhage. Finally, knockdown of endothelial Fas sufficiently recapitulated the protection against hemorrhage seen with the addition of mural cells. These results together suggest that regulation of endothelial Fas signaling is involved in the promotion of vascular integrity by mural cells in tumors.
血管生成是一个多步骤过程,最终导致血管成熟,新生血管得以稳定并发挥功能,而壁细胞在这一过程中起着至关重要的作用。最近的研究表明,肿瘤中的壁细胞也促进并维持血管完整性,具有广泛的临床意义,包括对肿瘤生长、转移和药物递送的调节。迄今为止,已经涉及各种调节信号通路,但Fas依赖性凋亡机制的调节是否参与其中尚未得到充分研究。我们首先比较了人胰腺导管腺癌和结肠癌中内皮细胞FAS染色情况,发现后者肿瘤脉管系统的壁细胞覆盖较少,其FAS表达高于前者。接下来,在分别以MS-1细胞和10T1/2细胞作为内皮细胞和壁细胞的体外共培养系统中,我们发现壁细胞降低了内皮细胞Fas表达。然后,在一个体内模型中,将C26结肠癌细胞与单独的MS-1细胞或进一步添加10T1/2细胞一起接种,我们证明壁细胞可防止出血。最后,内皮细胞Fas的敲低充分重现了添加壁细胞时所观察到的对出血的保护作用。这些结果共同表明,内皮细胞Fas信号的调节参与了肿瘤壁细胞对血管完整性的促进作用。