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Cell Type and Nuclear Size Dependence of the Nuclear Deformation of Cells on a Micropillar Array

机译:细胞型和核尺寸依赖于微米阵列的细胞核变形

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摘要

While various cellular responses to materials have been published, little concerns the deformation of cell nuclei. Herein we fabricated a polymeric micropillar array of appropriate dimensions to trigger the significant self-deformation of cell nuclei and examined six cell types, which could be classified into cancerous cells (Hela and HepG2) versus healthy cells (HCvEpC, MC3T3-E1, NIH3T3, and hMSC) or epithelial-like cells (Hela, HepG2, and HCvEpC) versus fibroblast-like cells (MC3T3-E1, NIH3T3, and hMSC). While all of the cell types exhibited severe nuclear deformation on the poly(lactide-co-glycolide) (PLGA) micropillar array, the difference between the epithelial-like and fibroblast-like cells was much more significant than that between the cancerous and healthy cells. We also examined the statistics of nuclear shape indexes of cells with an inevitable dispersity of nuclear sizes. It was found that larger nuclei favored more significant deformation on the micropillar array for each cell type. In the same region of nuclear size, the parts of the epithelial like cells exhibited more significant nuclear deformation than those of the fibroblast-like cells. Hence, this article reports the nuclear size dependence of the self-deformation of cell nuclei on micropillar arrays for the first time and meanwhile strengthens the cell-type dependence.
机译:虽然已经公布了对材料的各种细胞反应,但很少涉及细胞核的变形。在本文中,我们制造了一种适当尺寸的聚合物微米阵列,以引发细胞核的显着自变形,并检查六种细胞类型,可以分为癌细胞(HELA和HepG2)与健康细胞(HCVEPC,MC3T3-E1,NIH3T3,和HMSC)或上皮样细胞(HELA,HEPG2和HCVEPC)与成纤维细胞样细胞(MC3T3-E1,NIH3T3和HMSC)。虽然所有细胞类型在聚(丙交酯 - 共乙酰胺)(PLGA)微米阵列上表现出严重的核变形,但上皮样和成纤维细胞样细胞之间的差异比癌症和健康细胞之间的差异更大。我们还审查了核尺寸不可避免的分散性的细胞核形状指标统计。发现较大的核对每种细胞类型的微米阵列上有利于更大的变形。在核尺寸的同一区域中,上皮等细胞的部分表现出比成纤维细胞样细胞的核变形更大。因此,本文报告了第一次和同时加强细胞型依赖性细胞核对细胞核自变形的核尺寸依赖性。

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