首页> 外文会议>Society for Biomaterials Transaction Annual Meeting vol.29 pt.1 >Fabrication of Polymeric Replicas of Cell Surfaces with Nanoscale Resolution
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Fabrication of Polymeric Replicas of Cell Surfaces with Nanoscale Resolution

机译:纳米级分辨率的细胞表面聚合物复制品的制备

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Cells in vitro and in vivo navigate complex environments through the integration of a wide variety of cues, including diffusible factors, substrate-bound factors, electrical and magnetic fields, substrate rigidity, and topography. Some cues, such as diffusible factors, are easily isolated and have been systematically altered and presented to cells in culture. Other factors, including the topography introduced by one cell type and presented to a second cell type in co-culture, are difficult to introduce without inherently changing a multitude of variables that other cells contribute. So far, the difficulties in reproducing the complex shapes of cells without cellular components has left the influence of cellular topography unexplored. Here, we present a novel method of fabricating transparent, biocompatible polymeric substrates with biomimetic, cell- shaped surfaces with a resolution in the submicron range. As a result, the contribution of cellular topography as an independent factor in co-cultures can be studied for the first time.
机译:体外和体内细胞通过整合各种线索来在复杂的环境中导航,这些线索包括可扩散因子,与基质结合的因子,电场和磁场,基质刚性和形貌。一些线索,例如扩散因子,很容易被分离,并且已经被系统地改变并呈现给培养中的细胞。在不固有地改变其他细胞贡献的众多变量的情况下,很难引入其他因素,包括由一种细胞类型引入并在共培养中呈现给第二种细胞类型的地形。迄今为止,在没有细胞成分的情况下难以复制复杂形状的细胞的困难还没有探索出细胞形态的影响。在这里,我们提出了一种新颖的方法,该方法可制造具有仿生细胞形状表面且分辨率在亚微米范围内的透明生物相容性聚合物基材。结果,可以首次研究细胞地形作为共培养中的独立因素的贡献。

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