首页> 外文会议>2012 12th IEEE International Conference on Nanotechnology. >The viability of U-2 OS cells on Zinc Oxide nanowires observed via MTS assay in vitro
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The viability of U-2 OS cells on Zinc Oxide nanowires observed via MTS assay in vitro

机译:通过MTS分析体外观察U-2 OS细胞在氧化锌纳米线上的生存能力

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U-2 OS, an Osteosarcoma cell line was incubated on Zinc Oxide nanowire (ZnO NW) arrays of differing morphology for 72 hours at different seeding densities. MTS assays were conducted to ascertain the viability of the cells and the biocompatibility of ZnO NWs. It was found that the viability of the U-2 OS cell line when subjected to a high concentration of ∼1.22µg/ml NWs lies between ∼71–96% and ∼68–72% for substrates with a precursor chemical ratio of 2∶1 and 1∶1, respectively. It was observed that the shape of the NWs determined the viability of cells on the NWs; which was attributed to changes in the surface area available for cell adhesion. It was determined that the increased surface area of the 2∶1 NW array provides a higher area for interaction and formation of focal adhesions compared to arrays formed from the smaller, pointier 1∶1 NW array that inhibit cell proliferation due to non adhesive gaps.
机译:将骨肉瘤细胞U-2 OS在不同形态的氧化锌纳米线(ZnO NW)阵列上以不同的接种密度孵育72小时。进行MTS分析以确定细胞活力和ZnO NW的生物相容性。研究发现,对于前体化学比为2∶的底物,当U-2 OS细胞系承受约1.22μg/ ml NWs的高浓度时,其生存力在约71–96%和〜68–72%之间。 1和11:1。观察到,NWs的形状决定了NWs上细胞的存活力。这归因于可用于细胞粘附的表面积的变化。已经确定,与由较小,更尖的1∶1 NW阵列形成的阵列相比,2∶1 NW阵列增加的表面积为相互作用和粘着形成提供了更大的面积,该阵列由于非粘合间隙而抑制了细胞增殖。

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