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Aligned, isotropic and patterned carbon nanotube substrates that control the growth and alignment of Chinese hamster ovary cells

机译:排列,各向同性和图案化的碳纳米管基质,可控制中国仓鼠卵巢细胞的生长和排列

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摘要

Here we culture Chinese hamster ovary cells on isotropic, aligned and patterned substrates based on multiwall carbon nanotubes. The nanotubes provide the substrate with nanoscale topography. The cells adhere to and grow on all substrates, and on the aligned substrate, the cells align strongly with the axis of the bundles of the multiwall nanotubes. This control over cell alignment is required for tissue engineering; almost all tissues consist of oriented cells. The aligned substrates are made using straightforward physical chemistry techniques from forests of multiwall nanotubes; no lithography is required to make inexpensive large-scale substrates with highly aligned nanoscale grooves. Interestingly, although the cells strongly align with the nanoscale grooves, only a few also elongate along this axis: alignment of the cells does not require a pronounced change in morphology of the cell. We also pattern the nanotube bundles over length scales comparable to the cell size and show that the cells follow this pattern.
机译:在这里,我们在基于多壁碳纳米管的各向同性,对齐和图案化底物上培养中国仓鼠卵巢细胞。纳米管为基底提供纳米级的形貌。细胞粘附并生长在所有基材上,并且在对齐的基材上,细胞与多壁纳米管束的轴牢固对齐。组织工程需要控制细胞排列。几乎所有组织都由定向细胞组成。对齐的基板是使用直接的物理化学技术由多壁纳米管森林制成的;无需光刻即可制造具有高度对齐的纳米级凹槽的廉价大型基板。有趣的是,尽管细胞与纳米级凹槽强烈对齐,但只有少数也沿该轴伸长:细胞的对齐不需要细胞形态的明显改变。我们还在与细胞大小相当的长度尺度上对纳米管束进行图案化,并显示出细胞遵循了这种图案。

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