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Physicochemical Determinants of Multiwalled Carbon Nanotube Bacterial Cytotoxicity

机译:多壁碳纳米管细菌细胞毒性的理化决定因素

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Rational modification of carbon nanotubes (CNTs) to isolate their specific physical and chemical properties will inform a mechanistic understanding of observed CNT toxicity in bacterial systems. The present study compares the toxicity of commercially obtained multiwalled carbon nanotubes (MWNTs) before and after physicochemical modification via common purification and functionalization routes, including dry oxidation, acid treatment, functionalization, and annealing. Experimental results support a correlation between bacterial cytotoxicity and physicochemical properties that enhance MWNT-eell contact opportunities. For example, we observe higher toxicity when the nanotubes are uncapped, debundled, short, and dispersed in solution. These conclusions demonstrate that physicochemical modifications of MWNTs altertheir cytotoxicity in bacterial systems and underline the need for careful documentation of physical and chemical characteristics when reporting the toxicity of carbon-based nanomaterials.
机译:对碳纳米管(CNT)进行合理的修饰以分离其特定的物理和化学性质,将有助于对细菌系统中观察到的CNT毒性的机械理解。本研究比较了市售的多壁碳纳米管(MWNT)在通过常规纯化和功能化途径(包括干式氧化,酸处理,功能化和退火)进行物理化学修饰之前和之后的毒性。实验结果支持细菌细胞毒性与理化性质之间的相关性,从而增强了MWNT-eell接触的机会。例如,当纳米管不加盖,解捆,短且分散在溶液中时,我们观察到更高的毒性。这些结论表明,MWNTs的物理化学修饰会改变其在细菌系统中的细胞毒性,并强调在报告碳基纳米材料的毒性时需要仔细记录物理和化学特性。

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