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首页> 外文期刊>Environmental toxicology and chemistry >EFFECTS OF SILVER NANOPARTICLES ON ZEBRAFISH (DANIO RERIO) AND ESCHERICHIA COLI (ATCC 25922): A COMPARISON OF TOXICITY BASED ON TOTAL SURFACE AREA VERSUS MASS CONCENTRATION OF PARTICLES IN A MODEL EUKARYOTIC AND PROKARYOTIC SYSTEM
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EFFECTS OF SILVER NANOPARTICLES ON ZEBRAFISH (DANIO RERIO) AND ESCHERICHIA COLI (ATCC 25922): A COMPARISON OF TOXICITY BASED ON TOTAL SURFACE AREA VERSUS MASS CONCENTRATION OF PARTICLES IN A MODEL EUKARYOTIC AND PROKARYOTIC SYSTEM

机译:银纳米颗粒对斑马鱼(斑马鱼)和大肠埃希氏菌(ATCC 25922)的影响:基于总表面积与模型真核和原核系统中颗粒物总质量的毒性比较

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Silver nanoparticles (Ag NPs) have been classified as the most abundant NP found in commercial products. In the present study, zebrafish (Danio rerio) and bacteria {Escherichia coli; ATCC 25922) were used to test the size-dependent toxicological effects of Ag NPs, the effects of ionic silver versus Ag NPs, and Ag NP effects on mortality using mass concentration (mg/L) compared with total surface area (nm~2/L). Several diameters of Ag NPs (20, 50, 110 nm) as well as AgNO_3 were chosen as experimental treatments. Treated zebrafish embryos exhibited anomalies of the heart, namely, slower heart rates and pericardial edema. A size-dependent response was not observed in zebrafish when viewing mortality across all Ag NP treatments, although 20 nm elicited the highest incidence of abnormal motility and induced slower development. An Ag NP dose- and size-dependent response was observed in treated bacteria using mass concentration, with 20-nm Ag NP producing the highest mortality rate. In both zebrafish and bacteria, AgNO_3 was shown to be more toxic than Ag NPs at equivalent concentrations. When total surface area of Ag NPs was used to gauge bacterial mortality, a total surface area-dependent, but not size-dependent, response was observed for all three Ag NPs used in the present study, with nearly 100% mortality observed once a total surface area of approximately IE + 18 nm~2/L was reached. This trend was not apparent, however, when measuring total surface area for zebrafish mortality.
机译:银纳米颗粒(Ag NPs)已被归类为商业产品中含量最丰富的NP。在本研究中,斑马鱼(Danio rerio)和细菌{Escherichia coli; (ATCC 25922)使用质量浓度(mg / L)与总表面积(nm〜2 /)比较,测试了Ag NPs的尺寸依赖性毒理作用,离子银对Ag NPs的影响以及Ag NP对死亡率的影响。 L)。 Ag NP的几种直径(20、50、110 nm)以及AgNO_3被选作实验处理。处理过的斑马鱼胚胎表现出心脏异常,即心律减慢和心包水肿。当查看所有Ag NP处理的死亡率时,在斑马鱼中未观察到大小依赖性反应,尽管20 nm引起异常运动的发生率最高,并导致发育较慢。使用质量浓度在处理过的细菌中观察到Ag NP的剂量和大小依赖性反应,其中20 nm Ag NP的死亡率最高。在斑马鱼和细菌中,在相同浓度下,AgNO_3的毒性都比Ag NPs高。当使用Ag NPs的总表面积来衡量细菌的死亡率时,本研究中使用的所有三种Ag NPs均观察到总表面积依赖性,而不是大小依赖性,总的一次观察到近100%的死亡率达到大约IE + 18 nm〜2 / L的表面积。然而,当测量斑马鱼死亡率的总表面积时,这种趋势并不明显。

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