Division of Neurosurgery, Department of Surgery, Prince of Wales Hospital, 4/F, Department of Surgery, Lui Che Woo Clinical Sciences Building, Prince of Wales Hospital, 30-32 Ngan Shing Street, Shatin, NT, Hong Kong, China.
Department of Anatomical and Cellular Pathology, Prince of Wales Hospital, The Chinese University of Hong Kong, Hong Kong, China.
J Clin Neurosci. 2021 Dec;94:192-199. doi: 10.1016/j.jocn.2021.10.035. Epub 2021 Nov 2.
Meningioma is a central nervous system tumor originated from arachnoid cells. 2D cell culture is widely used as a platform for tumor research as it enables us to culture cells in in vitro and a controlled environment. However, in 2D culture condition, 3D architecture of in vivo tumor mass is lost and phenotypic change may occur. Due to the drawbacks of 2D cell culture, organoid culture is seen as an alternative platform for disease modeling, drug testing and personalized medicine. The objective of this study was to establishing protocol for culturing cells from patient meningioma tissue in in vitro 3D environment. Eight meningiomas were collected for the 3D organoid culture. Cells of 5 meningioma tissues survived and proliferated. Under 3D culture condition, cell aggregates were formed and cytoplasmic processes linking the cell aggregates could be observed. In H&E staining, ovaloid cells and spindle cells were observed. Resembling cultured organoids observed under the light microscope, cell aggregates were also observed in the H&E staining. Epithelial Membrane Antigen (EMA) staining was positive. In 4 (80%) cultured organoids, low Ki67 index (≤6%) were measured. In one cultured organoid, a high Ki67 index (12.8%) was seen. The result of this study revealed the feasibility of culturing meningioma cells in in vitro 3D culture condition. Organoid technology showed its potential as an alternative platform for meningioma research.
脑膜瘤是一种起源于蛛网膜细胞的中枢神经系统肿瘤。二维细胞培养因其能够在体外培养细胞并提供可控环境而被广泛应用于肿瘤研究平台。然而,在二维培养条件下,体内肿瘤块的 3D 结构会丢失,并且可能会发生表型变化。由于二维细胞培养的缺点,类器官培养被视为疾病建模、药物测试和个性化医疗的替代平台。本研究的目的是建立在体外 3D 环境中培养患者脑膜瘤组织细胞的方案。共收集了 8 个脑膜瘤用于 3D 类器官培养。有 5 个脑膜瘤组织的细胞存活并增殖。在 3D 培养条件下,细胞聚集体形成,并且可以观察到连接细胞聚集体的细胞质突起。在 H&E 染色中,观察到椭圆形细胞和梭形细胞。类似于在光学显微镜下观察到的培养类器官,在 H&E 染色中也观察到细胞聚集体。上皮膜抗原(EMA)染色阳性。在 4 个(80%)培养的类器官中,Ki67 指数(≤6%)较低。在一个培养的类器官中,Ki67 指数(12.8%)较高。本研究结果表明,在体外 3D 培养条件下培养脑膜瘤细胞是可行的。类器官技术显示出作为脑膜瘤研究替代平台的潜力。