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Antibacterial activity of fullerene water suspensions: Effects of preparation method and particle size

机译:富勒烯水悬浮液的抗菌活性:制备方法和粒径的影响

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Fullerene research in biological systems has been hindered by the compound's relative insolubility in water. However, C-60 molecules can be made to aggregate, forming stable fullerene water suspensions (FWS) whose properties differ from those of bulk solid C60. There are many different protocols for making FWS. This paper explores four of these methods and establishes the antibacterial activity of each resulting suspension, including a suspension made without intermediary solvents. The aggregates in each polydisperse suspension were separated by size using differential centrifugation and tested for antibacterial activity using Bacillus subtilis as a test organism. All suspensions exhibited relatively strong antibacterial activity. Fractions containing smaller aggregates had greater antibacterial activity, although the increase in toxicity was disproportionately higher than the associated increase in putative surface area. This suggests the need for improved understanding of the behavior of FWS towards organisms and in the environment to determine how C60 can be safely used and disposed.
机译:该化合物在水中的相对不溶性阻碍了在生物系统中进行富勒烯的研究。但是,可以使C-60分子聚集,形成稳定的富勒烯水悬浮液(FWS),其性质不同于大块固体C60。制作FWS有许多不同的协议。本文探索了其中的四种方法,并确定了每种悬浮液的抗菌活性,包括没有中间溶剂的悬浮液。使用差速离心将每个多分散悬浮液中的聚集体按大小进行分离,并使用枯草芽孢杆菌作为测试生物来测试其抗菌活性。所有悬浮液均表现出较强的抗菌活性。含有较小聚集体的馏分具有更大的抗菌活性,尽管毒性的增加远高于相关的推定表面积的增加。这表明需要更好地了解FWS对生物体和环境的行为,以确定如何安全地使用和处置C60。

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