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Advancing methods for the analysis of glioblastoma cell motion using quantitative time lapse holographic imaging and cellular tomography

机译:先进的方法用于胶质母细胞瘤细胞运动分析的定量延时全息成像和细胞断层扫描

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摘要

Glioblastomas are brain cancers with very poor patient prognosis. We have developed a Glioblastoma U87 MR model,using 4-dimensional imaging in multi-day tracking experiments. The cells have a tendency to form long-term cellularassociations, and quantifying their motility by standard approaches is difficult. We cultured the cells in a structuredenvironment (wound healing template), separated the X and Y information to define cumulative directionality plotsproviding a metric of the overall cell population movement analyzed by holographic imaging cytometry. With cellulartomography, we obtained 3D time lapse tomographs of cells at 0.2 um resolution, enabling sub-cellular analysis at levelsnot previously possible. Even in label-free cultures, sub-cellular components can be distinguished and color-coded basedon differences of their refractive index values.We discovered that there are numerous mitochondria present, both single and also actively undergoing fission and fusionprocesses. Many thin mitochondrial networks are present within the cytoplasm, and also extending away from the cell intunneling nanotubes. There is fusion of these networks to form larger structures that form connections between cells.Substances can be seen moving bi-directionally between cells. After several days of culture, the cells form largemulticellular and highly connected spheroids. This is evident in widefield stitched images of the spheroids.While the tendency of U87 cells to form spheroids was previously known, the combined results from our multi-modalityquantitative imaging platforms provide new insights into the cellular dynamics of glioblastoma cells, and the networksthat they form. This knowledge is being applied to the development anti-glioblastoma treatments.
机译:胶质母细胞瘤是脑癌,患者预后很差。我们开发了一个胶质母细胞瘤U87 MR模型,在多日跟踪实验中使用了4维成像。细胞趋于形成长期的细胞/细胞游离,并且难以通过标准方法量化其运动能力。我们在结构化\ r \ n环境(伤口愈合模板)中培养细胞,分离X和Y信息以定义累积方向图,从而提供了通过全息成像细胞术分析的总体细胞群体运动的度量。借助细胞层析技术,我们获得了分辨率为0.2 um的细胞的3D延时断层扫描,从而能够以前所未有的水平进行亚细胞分析。即使在无标记的培养物中,亚细胞成分也可以基于它们的折射率值的差异进行区分和颜色编码。\ r \ n我们发现存在大量的线粒体,既是单个的,也正在经历裂变和融合\ r \ n进程。许多薄的线粒体网络存在于细胞质中,并且在隧道纳米管中也远离细胞延伸。这些网络融合在一起,形成了较大的结构,形成了细胞之间的连接。\ r \ n可以看到物质在细胞之间双向移动。培养几天后,细胞形成大的\ n \ n多细胞和高度连接的球体。 \ r \ n虽然以前知道U87细胞形成球状体的趋势,但我们多模态成像平台的综合结果为胶质母细胞瘤的细胞动力学提供了新见解单元,以及它们形成的网络。该知识正被用于开发抗胶质母细胞瘤治疗。

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  • 会议地点 1605-7422;2410-9045
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    Department of Pharmaceutical Sciences Northeastern University, Boston MA Imaging Cytometry Core Facility Northeastern University, Boston MA;

    Center for Pharmaceutical Biotechnology and Nanomedicine, Northeastern University, Boston MA;

    Center for Pharmaceutical Biotechnology and Nanomedicine, Northeastern University, Boston MA;

    Department of Pharmaceutical Sciences Northeastern University, Boston MA;

    Department of Pharmaceutical Sciences Northeastern University, Boston MA Center for Pharmaceutical Biotechnology and Nanomedicine, Northeastern University, Boston MA;

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