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Cytotoxicity Assessment of Some Carbon Nanotubes and Related Carbon Nanoparticle Aggregates and the Implications for Anthropogenic Carbon Nanotube Aggregates in the Environment

机译:某些碳纳米管和相关碳纳米颗粒聚集体的细胞毒性评估及其对环境中人为碳纳米管聚集体的影响

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Nanotechnology and nanomaterials have become the new frontier world-wide over the past few years and prospects for the production and novel uses of large quantities of carbon nanotubes in particular are becoming an increasing reality. Correspondingly, the potential health risks for these and other nanoparticulate materials have been of considerable concern. Toxicological studies, while sparse, have been concerned with virtually uncharacterized, single wall carbon nanotubes, and the conclusions have been conflicting and uncertain. In this research we performed viability assays on a murine lung macrophage cell line to assess the comparative cytotoxicity of commercial, single wall carbon nanotubes (ropes) and two different multiwall carbon nanotube samples; utilizing chrysotile asbestos nanotubes and black carbon nanoaggregates as toxicity standards. These nanotube materials were completely characterized by transmission electron microscopy and observed to be aggregates ranging from 1 to 2 μm in mean diameter, with closed ends. The cytotoxicity data indicated a strong concentration relationship and toxicity for all the carbon nanotube materials relative to the asbestos nanotubes and black carbon. A commercial multiwall carbon nanotube aggregate exhibiting this significant cell response was observed to be identical in structure to multiwall carbon nanotube aggregates demonstrated to be ubiquitous in the environment, and especially in indoor environments, where natural gas or propane cooking stoves exist. Correspondingly, preliminary epidemiological data, although sparse, indicate a correlation between asthma incidence or classification, and exposure to gas stoves. These results suggest a number of novel epidemiological and etiological avenues for asthma triggers and related respiratory or other environmental health effects, especially since indoor number concentrations for multiwall carbon nanotube aggregates is at least 10 times the outdoor concentration, and virtually all gas combustion processes are variously effective sources. These results also raise concerns for manufactured carbon nanotube aggregates, and related fullerene nanoparticles.
机译:在过去的几年中,纳米技术和纳米材料已成为世界范围内的新前沿,并且特别是大量碳纳米管的生产和新颖用途的前景正日益成为现实。相应地,这些和其他纳米颗粒材料的潜在健康风险已引起人们的极大关注。毒理学研究虽然很少,但实际上与未表征的单壁碳纳米管有关,其结论是矛盾且不确定的。在这项研究中,我们在鼠肺巨噬细胞系上进行了活力测定,以评估商用单壁碳纳米管(绳)和两种不同的多壁碳纳米管样品的比较细胞毒性。利用温石棉石棉纳米管和黑碳纳米聚集体作为毒性标准。这些纳米管材料通过透射电子显微镜已完全表征,并观察到其聚集体的平均直径范围为1至2μm,且具有封闭端。细胞毒性数据表明,相对于石棉纳米管和黑碳,所有碳纳米管材料都具有很强的浓度关系和毒性。观察到具有这种显着的细胞反应的商业化的多壁碳纳米管聚集体在结构上与证明在环境中普遍存在的多壁碳纳米管聚集体相同,特别是在存在天然气或丙烷炊具的室内环境中。相应地,初步的流行病学数据虽然稀少,但表明哮喘的发病率或分类与暴露于燃气灶之间存在相关性。这些结果表明,有许多新颖的流行病学和病因学途径可引发哮喘,并引起相关的呼吸或其他环境健康影响,尤其是因为多壁碳纳米管聚集体的室内浓度至少是室外浓度的10倍,并且实际上所有气体燃烧过程都不同有效来源。这些结果也引起了对人造碳纳米管聚集体和相关富勒烯纳米颗粒的关注。

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