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腐殖酸对银纳米颗粒对天然水生细菌组合的细胞毒性的影响。

The effect of humic acids on the cytotoxicity of silver nanoparticles to a natural aquatic bacterial assemblage.

机构信息

Environmental Science Ph.D. Program, Jackson State University, Jackson, MS 39217, USA.

出版信息

Sci Total Environ. 2010 Nov 1;408(23):5817-23. doi: 10.1016/j.scitotenv.2010.08.030. Epub 2010 Sep 17.

Abstract

The effect of a terrestrial humic acid (HA) and a river HA on the cytotoxicity of silver nanoparticles (AgNPs) to natural aquatic bacterial assemblages (0 μM, 2.5 μM and 5 μM) was measured with spread plate counting. The effect of HA (20 and 40 ppm) on the cytotoxicity of AgNPs ranging in size between 15 and 25 nm was tested in the presence and in the absence of natural sunlight. The experiment was a full factorial, completely randomized design and the results were analyzed using the General Linear Model in SAS. LSMEANS was used to separate the means or combinations of means. Significant main effects of all independent variables, plus interaction effects in all cases except HA/LI and HA/AgNPs/LI were observed. The toxicity of AgNPs to natural aquatic bacterial assemblages appears to be concentration dependent for concentrations between 0 μM and 5 μM. The data indicate that the light exposure inhibited viability more than the darkness exposure. The HA treatment groups in the presence of light showed greater reduced viability count compared to darkness exposure groups. The inhibition of bacterial viability counts by AgNPs exposure was less in the light treatment groups containing a terrestrial HA compared to that with a river HA. Difference in the extent of reactive oxygen species formation and adsorption/binding of AgNPs was speculated to account for the observed phenomenon.

摘要

采用平板计数法测定了陆生腐殖酸(HA)和河流水解腐殖酸(HA)对天然水细菌组合体(0 μM、2.5 μM 和 5 μM)中银纳米颗粒(AgNPs)细胞毒性的影响。在有和没有自然光的情况下,测试了浓度在 15 至 25nm 之间的 HA(20 和 40ppm)对 AgNPs 细胞毒性的影响。该实验采用完全随机的析因设计,结果采用 SAS 中的一般线性模型进行分析。使用 LSMEANS 分离均值或均值组合。除了 HA/LI 和 HA/AgNPs/LI 之外,所有独立变量的主要效应以及所有情况下的相互作用效应均很显著。AgNPs 对天然水细菌组合体的毒性似乎呈浓度依赖性,浓度范围在 0 μM 和 5 μM 之间。数据表明,光照比黑暗更能抑制细菌的生存能力。与黑暗暴露组相比,在光照条件下,HA 处理组的细菌存活数量减少更多。与含有河流水解腐殖酸的处理组相比,在含有陆生腐殖酸的光照处理组中,AgNPs 暴露对细菌存活数量的抑制作用较小。推测活性氧形成和 AgNPs 吸附/结合程度的差异是造成这种现象的原因。

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