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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Interactions between rGO/TNT nanocomposites and cells: Regulation of cell morphology, uptake, cytotoxicity, adhesion and migration
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Interactions between rGO/TNT nanocomposites and cells: Regulation of cell morphology, uptake, cytotoxicity, adhesion and migration

机译:RGO / TNT纳米复合材料与细胞之间的相互作用:细胞形态,摄取,细胞毒性,粘附和迁移调节

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Reduced graphene oxide/titanium dioxide nanotube (rGO/TNT) composites have superior properties, such as a large surface area, extraordinary mechanical strength, high carrier mobility, etc. However, the biosafety and biocompatibility of these composites, such as their influences on cell viability and cell functions, which are of paramount importance, are still not fully addressed. In this study, rGO/TNT nanocomposites were successfully synthesized through a modified hydrothermal treatment method. Then, the interactions between the rGO/TNT nanocomposites and Raw264.7 mouse monocyte-macrophage cells were further investigated. The results show that the rGO/TNT nanocomposites could be internalized by Raw264.7 cells and mainly gathered inside the cytoplasm. No rGO/TNT nanocomposites were observed in the nucleus. Moreover, the rGO/TNT nanocomposites exhibited low cytotoxicity toward Raw264.7 cells at a lower dose, though they may exhibit cytotoxicity to some extent at very high concentrations. In addition, the uptake of the nanocomposites influenced the cell cytoskeleton organization, while the cell adhesion and migration abilities were also impaired.
机译:还原型氧化石墨烯/二氧化钛纳米管(rGO/TNT)复合材料具有优越的性能,例如大的表面积、非凡的机械强度、高的载流子迁移率等。然而,这些复合材料的生物安全性和生物相容性,例如它们对细胞活力和细胞功能的影响,仍然没有得到充分的解决,这是至关重要的。在本研究中,通过改进的水热处理方法成功地合成了rGO/TNT纳米复合材料。然后,研究了rGO/TNT纳米复合材料与Raw264的相互作用。进一步研究了7个小鼠单核巨噬细胞。结果表明,rGO/TNT纳米复合材料可以被Raw264内化。7个细胞,主要聚集在细胞质内。在细胞核中未观察到rGO/TNT纳米复合物。此外,rGO/TNT纳米复合材料对Raw264的细胞毒性较低。7细胞的剂量较低,但在非常高的浓度下,它们可能在一定程度上表现出细胞毒性。此外,纳米复合材料的摄取影响了细胞骨架的组织,同时细胞的粘附和迁移能力也受到损害。

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