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首页> 外文期刊>Nanoscience and Nanotechnology Letters >The Toxic Effects of Single Wall Carbon Nanotubes on E. coli and a Spore-Forming Bacillus Species
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The Toxic Effects of Single Wall Carbon Nanotubes on E. coli and a Spore-Forming Bacillus Species

机译:单壁碳纳米管对大肠杆菌和形成芽孢的芽孢杆菌物种的毒性作用

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The toxicity effects of single wall carbon nanotubes (SWCNTs) on Escherichia coli (E. coli) and Bacillus atropaheus (B.a) were here investigated. As-received and chemically purified nanotubes were exposed to the aforementioned cells and representative samples of the interacting complexes were inoculated in an agar plates for colony-growth quantification. It was observed that the higher the concentrations of nanotube the higher the degree of toxicity on the cells. It was also observed, that the as-received nanotubes induced more toxicity on the microorganisms, than the purified nanotubes. Also, it was shown that whereas the E. coli is more susceptible to the toxic effects of nanotubes, especially to raw CNTs, the Bacillus spores were typically more resistance. Cell viability count through a fluorescent stain procedure was also performed on the E.coli, and it was observed that the longer the interacting times between the microorganisms and the nanotubes, the larger the number of apoptotic cells. It seems that the presence of the nickel catalyst in the "as-received" nanotubes is an important source of toxicity for the bacteria. Further purification process of the nanotubes, effectively removed the metal catalyst reducing their toxic properties. The current research program will strengthen the basis for tailoring the toxic properties of carbon nanotubes based antimicrobial applications.
机译:本文研究了单壁碳纳米管(SWCNTs)对大肠杆菌(E. coli)和阿托巴芽孢杆菌(B.a)的毒性作用。将接受和化学纯化的纳米管暴露于上述细胞,并将相互作用的复合物的代表性样品接种在琼脂平板中,以进行菌落生长定量。观察到纳米管的浓度越高,对细胞的毒性程度越高。还观察到,与纯化的纳米管相比,如此接收的纳米管对微生物产生更大的毒性。而且,已经表明,尽管大肠杆菌更容易受到纳米管的毒性作用,特别是对未加工的碳纳米管的毒性作用,但芽孢杆菌的芽孢通常更具抵抗力。还通过荧光染色程序对大肠杆菌进行了细胞活力计数,并且观察到微生物与纳米管之间的相互作用时间越长,凋亡细胞的数量越大。似乎在“原样”纳米管中镍催化剂的存在是细菌毒性的重要来源。进一步纯化纳米管的过程,有效去除了金属催化剂,降低了它们的毒性。当前的研究计划将为基于抗菌剂的碳纳米管的毒性特性定制奠定基础。

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