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AFM STUDIES OF TUMOR CELL INVASION

机译:肿瘤细胞侵袭性的原子力显微镜研究

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Our recent investigations on human brain tumor (glioma) cell micro and nanodynamics via AFM methodologies have shown that brain tumor invadopodia (malignant cytostructural cell extensions with sensory, motility, and invasive characteristics extended by tumor cells into their environment) can assume specific geometries based on cell plating density and the location/distance of neighboring cells indicating strong cell sensing and signaling mechanisms between malignant cells and their surroundings. In certain occasions, cancer cell processes (extensions) have been found to be highly directional measuring more than 80 μm while invading neighboring cells by following a connecting straight path. Moreover, strong chemical gradients are suggested to influence the growth and motility of cell processes allowing for gradual adjustments of the direction of the invasive tumor extension. In response to external signals, rumor cell invadopodia develop micron-sized side-ligaments that follow the chemical gradients in their neighborhood and assist the reorientation of their main intrusive elements.
机译:我们最近通过AFM方法对人脑肿瘤(神经胶质瘤)细胞的微观和纳米动力学的研究表明,脑肿瘤侵染性(恶性细胞结构细胞的扩展具有感觉,运动性和侵袭性,肿瘤细胞将其扩展到其环境中)可以根据细胞铺板密度和邻近细胞的位置/距离表明了恶性细胞与其周围环境之间强烈的细胞感应和信号传导机制。在某些情况下,已发现癌细胞过程(延伸)具有高度方向性,测量值超过80μm,同时遵循连接直线路径侵入相邻细胞。此外,建议使用强化学梯度来影响细胞过程的生长和运动,从而允许逐渐调整浸润性肿瘤扩展的方向。响应外部信号,谣言细胞侵袭性足细胞发育出微米级的侧链,该侧链遵循其附近的化学梯度并有助于其主要侵入性元素的重新定向。

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