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In Vitro Investigation of the Cellular Toxicity of Boron Nitride Nanotubes

机译:氮化硼纳米管细胞毒性的体外研究

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摘要

Nanotubes present one of the most promising opportunities in nanotechnology with a plethora of applications in nanoelectronics, mechanical engineering, as well as in biomedical technology. Due to their structure and some physical properties, boron nitride (BN) nanotubes (BNNTs) possess several advantages over carbon nanotubes (CNTs), and they are now commercially produced and used on a large scale. The human and environmental exposure to BN nanomaterials is expected to increase in the near future, and their biological responses need to be examined. Using complementary mays, we have extensively investigated the effects of BNNTs on the viability and metabolic status of different cell types: on the one hand, the effects on cells present in the lung alveoli, and on the other hand, on human embryonic kidney (HEK) cells. Our results indicate that BNNTs are cytotoxic for all cell types studied and, In most cases, are more cytotoxic than CNTs in their pristine (p-CNT) and functionalized (f-CNT) form. However, the level of toxicity and the prominent morphological alterations in the cell populations withstanding BNNT exposure are cell-type-dependent. For instance, BNNTs induced extensive multinucleated giant cell formation in macrophages and increased levels of eosinophilia in fibroblasts. Finally, our results point the toxicity of tubular nanomaterials to be strongly correlated with the cellular accumulation enhanced for straight nanotubes.
机译:纳米管是纳米技术中最有前途的机会之一,在纳米电子,机械工程以及生物医学技术中有大量应用。由于其结构和某些物理特性,氮化硼(BNNT)纳米管(BNNTs)具有比碳纳米管(CNTs)更好的优点,并且现在已经商业化生产并大规模使用。预计在不久的将来人类和环境对BN纳米材料的暴露将会增加,需要对其生物学反应进行研究。我们使用互补可能,广泛研究了BNNTs对不同细胞类型的活力和代谢状态的影响:一方面,对肺泡中存在的细胞的影响,另一方面,对人胚肾(HEK)的影响。 ) 细胞。我们的结果表明,BNNT对所有研究的细胞类型均具有细胞毒性,并且在大多数情况下,其原始(p-CNT)和功能化(f-CNT)形式的细胞毒性均比CNT高。但是,在承受BNNT暴露的细胞群体中,毒性水平和显着的形态变化是细胞类型依赖性的。例如,BNNTs在巨噬细胞中诱导广泛的多核巨细胞形成,并在成纤维细胞中增加嗜酸性粒细胞水平。最后,我们的结果指出管状纳米材料的毒性与直纳米管增强的细胞积累密切相关。

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