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首页> 外文期刊>Journal of nanoscience and nanotechnology >Morphological Control of Cells on 3-Dimensional Multi-Layer Nanotopographic Structures
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Morphological Control of Cells on 3-Dimensional Multi-Layer Nanotopographic Structures

机译:三维多层纳米形貌结构上细胞的形态学控制

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The extracellular matrix (ECM) environment is known to play an important role in the process of various cell regulatory mechanisms. We have investigated the ability of 3-dimensional ECM geometries to induce morphological changes in cells. Bi-layer polymeric structures with submicron scale stripe patterns were fabricated using a two-step nano-imprinting technique, and the orientation angle (theta(alpha)) of the upper layer was controlled by changing its alignment with respect to the orientation of the bottom layer. When cells were grown on the mono-layer stripe structure with a single orientation, they elongated along the direction of the stripe pattern. On bi-layer polymer structures, the cell morphologies gradually changed and became rounded, with an increase of theta(alpha) up to 90 degrees, but the polarities of these cells were still aligned along the orientation of the upper layer. As a result, we show that the polarity and the roundness of cells can be independently regulated by adjusting the orientation of 3-dimensional hierarchical ECM topography.
机译:已知细胞外基质(ECM)环境在各种细胞调节机制的过程中起着重要作用。我们已经研究了3维ECM几何形状诱导细胞形态变化的能力。使用两步纳米压印技术制造具有亚微米尺度条纹图案的双层聚合物结构,并通过改变其相对于底部方向的排列来控制上层的方向角(θα)层。当细胞以单方向在单层条纹结构上生长时,它们沿着条纹图案的方向伸长。在双层聚合物结构上,细胞形态逐渐改变并变圆,随着thetaα的增加直至90度,但这些细胞的极性仍沿上层方向排列。结果,我们表明,可以通过调整3维分层ECM地形图的方向来独立调节单元的极性和圆度。

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