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Atomic force microscopy measurement of cytostructural elements involved in the nanodynamics of tumour cell invasion

机译:原子力显微镜测量参与肿瘤细胞侵袭的纳米动力学的细胞结构元素

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摘要

Cytostructural features associated with the invasive characteristics of brain tumour cells have been inspected and measured with atomic force microscopy. In one case the invadopodia extended from a T98 human glioblastoma cell departed from a linear path by 1 mrad for each 240 nm of axial extension from the point where its curvature began. In another cell, diametrically opposed invadopodia were projected over the collagen substrate and were co-aligned to within <175 mrad (10 deg ) of a common axis. In the latter case, an estimate of the torque that would be needed to overcome the adhesion forces and rotate the cell via moments applied by the invadopodia led to a value of 7 nN (mu)m. From measurements by others of the interactions between glioma cells and collagen, the implied adhesion force for this cell was approx =0.5 nN, which was consistent with still other values reported in the literature. The measured mean radius of the cell was roughly 15 (mu)m. The implications of these results for understanding and slowing the invasion of tumour cells through the extracellular matrix of the brain are discussed.
机译:与脑肿瘤细胞的侵袭特性有关的细胞结构特征已经用原子力显微镜检查和测量。在一种情况下,对于从其曲率开始的轴向延伸的每240 nm轴,从T98人胶质母细胞瘤细胞延伸的侵袭足从线性路径偏离1 mrad。在另一个单元格中,完全相反的内脏足投射在胶原基质上,并共同排列在共同轴的<175 mrad(10度)内。在后一种情况下,克服侵入力并通过侵入足所施加的力矩旋转细胞所需的扭矩估计值达到7 nNμm。通过其他方法对神经胶质瘤细胞与胶原蛋白之间相互作用的测量,该细胞的隐含粘附力约为= 0.5 nN,这与文献中报道的其他值一致。测得的电池平均半径约为15μm。讨论了这些结果对于理解和减缓肿瘤细胞通过脑细胞外基质的侵袭的意义。

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