Graduate Institute of Basic Medical Science, China Medical University and Hospital, Taichung, Taiwan.
Mol Imaging Biol. 2012 Aug;14(4):489-99. doi: 10.1007/s11307-011-0516-0.
We determined the impact of the cycling hypoxia tumor microenvironment on tumor cell invasion and infiltration in U87 human glioblastoma cells and investigated the underlying mechanisms using molecular bio-techniques and imaging.
The invasive phenotype of U87 cells and xenografts exposed to experimentally imposed cycling hypoxic stress in vitro and in vivo was determined by the matrigel invasion assay in vitro and dual optical reporter gene imaging in vivo. RNAi-knockdown technology was utilized to study the role of the NADPH oxidase subunit 4 (Nox4) on cycling hypoxia-mediated tumor invasion.
Cycling hypoxic stress significantly promoted tumor invasion in vitro and in vivo. However, Nox4 knockdown inhibited this effect. Nox4-generated reactive oxygen species (ROS) are required for cycling hypoxia-induced invasive potential in U87 cells through the activation of NF-κB- and ERK-mediated stimulation of MMP-9.
Cycling hypoxia-induced ROS via Nox4 should be considered for therapeutic targeting of tumor cell invasion and infiltration in glioblastoma.
我们通过分子生物技术和成像技术,研究了周期性缺氧肿瘤微环境对 U87 人胶质母细胞瘤细胞侵袭和浸润的影响,并探讨了其潜在机制。
通过体外基质胶侵袭实验和体内双光学报告基因成像,检测了体外和体内实验中周期性缺氧应激对 U87 细胞侵袭表型和异种移植物的影响。利用 RNAi 敲低技术研究了 NADPH 氧化酶亚单位 4(Nox4)在周期性缺氧介导的肿瘤侵袭中的作用。
周期性缺氧应激显著促进了肿瘤的体外和体内侵袭。然而,Nox4 敲低抑制了这种作用。Nox4 产生的活性氧(ROS)通过激活 NF-κB 和 ERK 介导的 MMP-9 刺激,是周期性缺氧诱导 U87 细胞侵袭潜能所必需的。
应考虑针对 Nox4 的周期性缺氧诱导 ROS 来治疗胶质母细胞瘤中的肿瘤细胞侵袭和浸润。