Heffernan John M, Overstreet Derek J, Le Long D, Vernon Brent L, Sirianni Rachael W
Barrow Brain Tumor Research Center, Barrow Neurological Institute, 350 W. Thomas Road, Phoenix, AZ, 85013, USA,
Ann Biomed Eng. 2015 Aug;43(8):1965-77. doi: 10.1007/s10439-014-1223-1. Epub 2014 Dec 17.
The invasion of malignant glioblastoma (GBM) cells into healthy brain is a primary cause of tumor recurrence and associated morbidity. Here, we describe a high-throughput method for quantitative measurement of GBM proliferation and invasion in three-dimensional (3D) culture. Optically clear hydrogels composed of thiolated hyaluronic acid and gelatin were chemically crosslinked with thiol-reactive poly(ethylene glycol) polymers to form an artificial 3D tumor microenvironment. Characterization of the viscoelasticity and aqueous stability indicated the hydrogels were mechanically tunable with stiffness ranging from 18 Pa to 18.2 kPa and were resistant to hydrolysis for at least 30 days. The proliferation, dissemination and subsequent invasion of U118 and U87R GBM spheroids cultured on the hydrogels were tracked in situ with repeated fluorescence confocal microscopy. Using custom automated image processing, cells were identified and quantified through 500 µm of gel over 14 days. Proliferative and invasive behaviors were observed to be contingent on cell type, gel stiffness, and hepatocyte growth factor availability. These measurements highlight the utility of this platform for performing quantitative, fluorescence imaging analysis of the behavior of malignant cells within an artificial, 3D tumor microenvironment.
恶性胶质母细胞瘤(GBM)细胞侵入健康脑组织是肿瘤复发及相关发病率的主要原因。在此,我们描述了一种用于在三维(3D)培养中定量测量GBM增殖和侵袭的高通量方法。由硫醇化透明质酸和明胶组成的光学透明水凝胶与硫醇反应性聚乙二醇聚合物进行化学交联,以形成人工3D肿瘤微环境。粘弹性和水稳定性的表征表明,水凝胶在机械性能上是可调的,刚度范围为18 Pa至18.2 kPa,并且至少30天抗水解。通过重复荧光共聚焦显微镜原位追踪在水凝胶上培养的U118和U87R GBM球体的增殖、扩散及随后的侵袭。使用定制的自动化图像处理,在14天内通过500 µm的凝胶对细胞进行识别和定量。观察到增殖和侵袭行为取决于细胞类型、凝胶刚度和肝细胞生长因子的可用性。这些测量突出了该平台在对人工3D肿瘤微环境内恶性细胞行为进行定量荧光成像分析方面的实用性。