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Atomic force microscopy observations of tumour cell invadopodia: novel cellular nanomorphologies on collagen substrates

机译:肿瘤细胞侵染足的原子力显微镜观察:胶原基质上的新型细胞纳米形态

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Atomic force microscopy was used to map the surface topographies and the fine details of cells from the T98 human glioblastoma brain tumour cell line. The cells were plated on collagen substrate within growth media, and then exposed to air during the microscopy sessions. Over the course of these studies an example of a cytostructural invadopodia was observed extending in a straight line from one cell to another over a distance of approximately 80 mu m, but with an estimated deviation from linearity over the length of its path of only approx=8 nm mu m~(-1), i.e., <1 percent. The remarkable straightness of its path suggests that strong cell-to-cell signalling processes are at work during even this earliest stage of tumorigenesis. A better understanding of the nanoscale morphologies and mechanics of novel cytostructural elements like this particular form of invadopodia may provide insights on new modalities of brain tumour treatment.
机译:原子力显微镜用于绘制T98人胶质母细胞瘤脑肿瘤细胞系的表面形貌和细胞细部图。将细胞铺在生长培养基中的胶原蛋白底物上,然后在显微镜检查期间暴露于空气。在这些研究过程中,观察到一个细胞结构侵袭足的例子,它沿一条直线从一个细胞延伸到另一个细胞,延伸的距离约为80微米,但在其路径长度上的线性估计偏差仅约= 8 nmμm〜(-1),即<1%。其路径非同寻常的直线性表明,即使在肿瘤发生的这一早期阶段,强大的细胞间信号传递过程仍在起作用。对新型细胞结构元件(如这种特殊形式的侵染足细胞)的纳米级形态和力学的更好理解可能会为脑肿瘤治疗的新模式提供见识。

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