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Three-Dimensional Rapid Prototyping of Multidirectional Polymer Nanoprobes for Single Cell Insertion

机译:用于单细胞插入的多向聚合物纳米探针的三维快速成型

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Three-dimensional (3D) thermal drawing at nanoscale as a novel rapid prototyping method was demonstrated to create multidirectional polymer nanoprobes for single cell analysis. This 3D drawing enables simple and rapid fabrication of polymeric nanostructures with high aspect ratio. The effect of thermal drawing parameters, such as drawing speeds, dipping depths, and contact duration on the final geometry of polymer nanostructures was investigated. Vertically aligned and L-shaped nanoprobes were fabricated and their insertion into living single cells such as algal cells and human neural stem cells was demonstrated. This technique can be extended to create more complex 3D structures by controlling drawing steps and directions on any surface.
机译:纳米(3D)热绘制作为一种新型的快速原型制作方法被证明可以创建用于单细胞分析的多方向聚合物纳米探针。此3D绘图可实现高纵横比的聚合物纳米结构的简单,快速制造。研究了热拉伸参数(例如拉伸速度,浸入深度和接触持续时间)对聚合物纳米结构最终几何形状的影响。制造了垂直排列和L形的纳米探针,并证明了它们插入活细胞中的功能,如藻类细胞和人神经干细胞。通过控制任何表面上的绘制步骤和方向,可以扩展此技术以创建更复杂的3D结构。

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