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有机和无机纳米 FeO:基于海藻石莼的合成、抗菌效果及对卤盐水轮虫(Brachionus rotundiformis)的急性毒性。

Organic and inorganic nano-FeO: Alga Ulva flexuosa-based synthesis, antimicrobial effects and acute toxicity to briny water rotifer Brachionus rotundiformis.

机构信息

Department of Marine Biology, Faculty of Marine Science and Technology, University of Hormozgan, Bandar Abbas, Iran.

Department of Marine Biology, Faculty of Marine Science and Technology, University of Hormozgan, Bandar Abbas, Iran.

出版信息

Environ Pollut. 2018 Jun;237:50-64. doi: 10.1016/j.envpol.2018.02.036. Epub 2018 Feb 20.

Abstract

Following the recent progress in magnetic nanotechnology, concern over the optimal benefits and potential risks of iron oxide nanoparticles (Fe NPs), has increased. Hence, to minimize the negative impacts of inorganic Fe NPs, we report the phyco-synthesis and characterization of superparamagnetic FeO NPs via reduction of ferric/ferrous chloride solution (2:1 M ratio; 88 °C) with green macroalga, Ulva flexuosa (wulfen) J.Agardh aqueous extract. The biogenic process is clean, eco-friendly, rapid, and facile to handle. These green fabricated magnetite NPs are characterized by Fourier transform infrared spectroscopy (FT-IR), X-ray diffraction (XRD), transmission electron microscopy (TEM), field emission scanning electron microscopy (FESEM), thermogravimetric analysis (TGA), particle size analysers (PSA), zeta potential (ZP) measurement, and vibrating sample magnetometry (VSM) techniques. The results confirmed that the cubo-spherical, polydisperse of biosynthesized FeO NPs with an average diameter of 12.3 nm was formed. The antagonistic effects of algal extract, chemo-route and U. flexuosa-derived FeO MgNPs on selective human pathogenic microbes (i.e. n = 11) resulted in strong antibacterial and moderate antifungal activity. The comparative toxic and reproductive effects of the chemo- and bio-routes of FeO-MgNPs against rotifer B. rotundiformis exhibited low acute toxicity with a lower inducing effect of biogenic nano-magnetite on reduction rotifer reproductive rate than its chemogenic counterpart. In view of the nanoecotoxicity, though the current study covered a wide range of exposure concentrations (10-500 mg/L) of organic and inorganic nano sizes of FeO in brackish water rotifer, a biotoxicity assay at higher dosage or a comprehensive risk assessment in different aqua-organisms is recommended.

摘要

随着磁性纳米技术的最新进展,人们对氧化铁纳米粒子(Fe NPs)的最佳效益和潜在风险的关注度不断增加。因此,为了最大限度地减少无机 Fe NPs 的负面影响,我们报告了通过还原 ferric/ferrous 氯化物溶液(2:1 M 比例;88°C)与绿色大型海藻浒苔(wulfen)J. Agardh 水提物合成和表征超顺磁 FeO NPs。生物合成过程清洁、环保、快速且易于处理。这些绿色制造的磁铁矿 NPs 通过傅里叶变换红外光谱(FT-IR)、X 射线衍射(XRD)、透射电子显微镜(TEM)、场发射扫描电子显微镜(FESEM)、热重分析(TGA)、粒度分析仪(PSA)、Zeta 电位(ZP)测量和振动样品磁强计(VSM)技术进行了表征。结果证实,形成了具有平均直径为 12.3nm 的立方-球形、多分散的生物合成 FeO NPs。海藻提取物、化学途径和浒苔衍生的 FeO MgNPs 对选择性人类致病微生物(即 n=11)的拮抗作用导致强烈的抗菌和适度的抗真菌活性。化学途径和生物途径的 FeO-MgNPs 对轮虫 B. rotundiformis 的比较毒性和生殖效应表明,其急性毒性较低,生物合成纳米磁铁矿对轮虫生殖率的降低作用低于其化学生成的对应物。就纳米生态毒性而言,尽管本研究涵盖了广泛的暴露浓度(10-500mg/L),但在咸水轮虫中研究了有机和无机纳米大小的 FeO,建议在更高剂量下进行生物毒性试验或在不同水生生物中进行综合风险评估。

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