首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Intrinsic biological property of colloidal fullerene nanoparticles (nC60): lack of lethality after high dose exposure to human epidermal and bacterial cells.
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Intrinsic biological property of colloidal fullerene nanoparticles (nC60): lack of lethality after high dose exposure to human epidermal and bacterial cells.

机译:胶体富勒烯纳米颗粒(nC60)的内在生物学特性:高剂量暴露于人表皮和细菌细胞后,没有致死性。

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摘要

Colloidal fullerene nanoparticles (nC60) were reported to be toxic to fish brains, human cells and microorganisms, while new observations suggest that the observed toxicity may be due to tetrahydrofuran (THF) solvent or its oxidative by-products in nC60 preparations. Here, we report a novel method for preparing nC60 nanoparticles that does not use THF solvent, but provides nC60 with an average particle size of 43.8 nm and a yield approximately 100 times higher than the THF method. The prepared nC60 showed a similar antioxidant capacity compared to a water-soluble vitamin E analog. No mortality to human epidermal keratinocytes was observed at a concentration 170 times higher than the reported LC50 values for other human cell lines. No toxicity was observed to E. coli or B. subtilis at up to 342 microg/mL nC60 for 16 h, which was hundred times higher than the reported minimum inhibitory concentrations of nC60 prepared using THF method for these two bacteria. When E. coli was exposed to 85.5 microg/mL nC60 with daily passage for 4 days, the stationary phase populations at different passages were not statistically different (p = 0.05) from the control without nC60 nanoparticles. These results reveal that the intrinsic biological property of nC60 is non-toxic, confirming the prior non-toxic reports when using nC60 prepared with non-THF methods.
机译:据报道,胶体富勒烯纳米颗粒(nC60)对鱼脑,人类细胞和微生物有毒性,而新的观察结果表明,所观察到的毒性可能是由于nC60制剂中的四氢呋喃(THF)溶剂或其氧化副产物所致。在这里,我们报道了一种新颖的制备nC60纳米颗粒的方法,该方法不使用THF溶剂,但提供的平均粒度为43.8 nm的nC60,其产率比THF方法高约100倍。制备的nC60与水溶性维生素E类似物相比具有相似的抗氧化能力。浓度未报告的其他人类细胞系LC50值的170倍,未观察到人类表皮角质形成细胞的死亡。在高达342 microg / mL nC60的条件下,在16h内未观察到对大肠杆菌或枯草芽孢杆菌的毒性,这是报道的用THF方法制备的对这两种细菌的​​nC60最低抑菌浓度的一百倍。当大肠杆菌每天通过85.5 microg / mL nC60暴露4天时,与不使用nC60纳米颗粒的对照组相比,不同传代的固定相群体没有统计学差异(p = 0.05)。这些结果表明,nC60的内在生物学特性是无毒的,从而证实了使用非THF方法制备的nC60时先前的无毒报道。

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