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Shape and surface properties of titanate nanomaterials influence differential cellular uptake behavior and biological responses in THP-1 cells

机译:钛酸酯纳米材料的形状和表面性质影响THP-1细胞中不同的细胞摄取行为和生物学响应

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We investigated cellular uptake behavior and biological responses of spherical and fibrous titanate nanomaterials in human monocyte THP-1 cells. Two titanate nanofibers (TiNFs), namely TF-1 and TF-2, were synthesized from anatase TiO 2 nanoparticles (TNPs) via hydrothermal treatment. The synthesized TiNFs and TNPs were thoroughly characterized for their size, crystallinity, surface area and surface pH. TF-1 (~2 μm in length) was amorphous with an acidic surface, while TF-2 (~7 μm in length) was brookite with a basic surface. The results demonstrated that none of these titanate nanomaterials resulted in significant cytotoxicity, even at the highest doses tested (50 μg/ml), consistent with an absence of ROS generation and lack of change of mitochondrial membrane potential. While no cytotoxic effect was found in the titanate nanomaterials, TF-2 tended to decrease the proliferation of THP-1 cells. Furthermore, TF-2 resulted in an inflammatory cytokine response, as evidenced by dramatic induction of IL-8 and TNF-α release in TF2 but not TF-1 nor TNPs. These results suggest that shape of titanate nanomaterials plays an important role in cellular internalization, while surface pH may play a prominent role in inflammatory response in THP-1 cells. Highlights ? Titanate nanomaterials show no significant cytotoxicity in THP-1 cells. ? Cellular uptake pattern is dependent on shape of the nanomaterials. ? Nanomaterial surface pH is influence inflammatory response in immune cells.
机译:我们调查了人类单核细胞THP-1细胞中球形和纤维状钛酸酯纳米材料的细胞摄取行为和生物学响应。通过水热处理由锐钛矿型TiO 2纳米颗粒(TNP)合成了两种钛酸酯纳米纤维(TiNFs),即TF-1和TF-2。合成的TiNFs和TNPs的大小,结晶度,表面积和表面pH值都得到了彻底的表征。 TF-1(长度约2μm)是具有酸性表面的无定形,而TF-2(长度约7μm)是具有基本表面的板钛矿。结果表明,即使在最高测试剂量(50μg/ ml)下,这些钛酸酯纳米材料都没有导致明显的细胞毒性,这与不存在ROS产生和线粒体膜电位的变化一致。尽管在钛酸酯纳米材料中未发现细胞毒性作用,但TF-2倾向于降低THP-1细胞的增殖。此外,TF-2导致炎性细胞因子反应,这可以通过在TF2中诱导IL-8和TNF-α释放而得到明显证明,而TF-1和TNP则没有。这些结果表明,钛酸酯纳米材料的形状在细胞内化中起重要作用,而表面pH值可能在THP-1细胞的炎症反应中起重要作用。强调 ?钛酸盐纳米材料在THP-1细胞中没有显示出明显的细胞毒性。 ?细胞摄取模式取决于纳米材料的形状。 ?纳米材料表面的pH值会影响免疫细胞的炎症反应。

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