Park Seungjo, Avera Alexandra D, Kim Yonghyun
Department of Chemical and Biological Engineering, The University of Alabama, Tuscaloosa, Alabama, USA.
Biotechnol Bioeng. 2022 Nov;119(11):3252-3274. doi: 10.1002/bit.28191. Epub 2022 Jul 30.
Glioblastoma (GBM) is the most aggressive type of brain tumor that originates from glioblastoma stem cells (GSCs). In the brain, GSCs are supported by a tumor microenvironment (TME) residing in the perivascular niche and the hypoxic niche. The GBM TME is highly heterogenous and exhibits complex cell-to-cell interactions. Three-dimensional tumorspheres cultured in stem cell-enriching media is often used as an in vitro model. The GBM tumorspheres retain some of the transcriptional and translational GSC features but often fails to recapitulate intertumor heterogeneity. Here, we developed a simple, matrix-free, and in vivo-like GBM organoids (GBOs) using patient-derived xenograft GBM lines in small-scale bioreactors. Shear stress was optimized to produce highly reproducible GBOs over 1 mm diameter within 4-5 weeks. GBOs exhibited high stemness and strong cell-to-cell interactions compared to conventional tumorsphere cultures. They displayed spatial gradients of hypoxia-inducible factor 1α positive hypoxic cores where CD133-positive cells resided and spatially heterogeneous expression of NOTCH and its ligands. We also observed a self-established, hierarchically organized, and heterogeneous TME by GBM transdifferentiation into endothelial cells, pericytes, and astrocytes. Collectively, we demonstrate the ability to biomanufacture uniformly sized GBOs that recapitulate in vivo GBM TME features that can serve as an improved GBM in vitro model.
胶质母细胞瘤(GBM)是起源于胶质母细胞瘤干细胞(GSCs)的最具侵袭性的脑肿瘤类型。在大脑中,GSCs由位于血管周围微环境和缺氧微环境中的肿瘤微环境(TME)支持。GBM的TME高度异质性,表现出复杂的细胞间相互作用。在富含干细胞的培养基中培养的三维肿瘤球通常用作体外模型。GBM肿瘤球保留了一些GSC的转录和翻译特征,但往往无法概括肿瘤间的异质性。在这里,我们使用患者来源的异种移植GBM系在小型生物反应器中开发了一种简单、无基质且类似体内的GBM类器官(GBOs)。优化剪切应力以在4-5周内产生直径超过1毫米的高度可重复的GBOs。与传统的肿瘤球培养相比,GBOs表现出高干性和强大的细胞间相互作用。它们显示出缺氧诱导因子1α阳性缺氧核心的空间梯度,CD133阳性细胞位于其中,并且NOTCH及其配体存在空间异质性表达。我们还观察到GBM通过转分化为内皮细胞、周细胞和星形胶质细胞而形成的自我建立、分层组织且异质性的TME。总体而言,我们证明了能够生物制造尺寸均匀的GBOs,其概括了体内GBM TME的特征,可作为一种改进的GBM体外模型。