>Because environment pollutants have a strong impact on ecosystems, including human health, methods of their '/> Use of synchrotron radiation X‐ray fluorescence and X‐ray absorption spectroscopy to investigate bioaccumulation, molecular target, and biotransformation of volcanic elements
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Use of synchrotron radiation X‐ray fluorescence and X‐ray absorption spectroscopy to investigate bioaccumulation, molecular target, and biotransformation of volcanic elements

机译:使用同步辐射X射线荧光和X射线吸收光谱来研究生物累积,分子靶标和火山元素的生物转化

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摘要

>Because environment pollutants have a strong impact on ecosystems, including human health, methods of their determination and mitigation have received special attention in recent years. Taking advantage of the wide range of data that can be obtained by synchrotron radiation X‐ray fluorescence spectroscopy (SRXRF) in the field of environmental sciences, different instrumental setups were used to study the biological fates of toxic elements in volcanic environments. The elemental composition of plants, algae, and bacteria in Copahue and Domuyo volcanoes from Argentinean Patagonia was determined by SRXRF and the volcanic elements Ti, Fe, and Zn were abundant in these organisms. Interestingly, a high As concentration was found in cyanobacteria (26.2?μg/g) living in As contaminated stream (250?μg/ml). Because arsenic is toxic and human carcinogen, element‐retention capacity, element‐protein associations, and arsenic metabolism in this As resistant organism were analyzed by SRXRF. A high capacity (100–95%) of Ti??Fe??Cr??Sr??Ni??Cu??Mn??Zn??As retention was found after aqueous/alcoholic extraction assisted by ultrasonication. The cyanobacterial proteins were separated by SDS‐PAGE, electro‐transferred to nitrocellulose, and mapped by SRXRF. Defined protein bands containing Ca, Ti, Mn, Fe, and/or Zn were observed. Their ability to metabolize arsenic was revealed by combining SRXRF and X‐ray absorption near edge spectroscopy and Dimethylarsenic was found. Based on results, we speculate that these cyanobacteria could be interesting candidates for water treatment. Finally, we conclude that SRXRF is a valuable tool to study the biological cycle of environmental pollutants, including their accumulation, molecular targets, and metabolism. The SRXRF may also assist in remediation researches.
机译: >因为环境污染物对生态系统产生了强烈影响,包括人类健康,方法近年来,他们的决心和缓解受到特别关注。利用环境科学领域的同步辐射X射线荧光光谱(SRXRF)可以获得可通过同步辐射X射线荧光光谱(SRXRF)来获得不同的仪器设置来研究火山环境中有毒元素的生物学率。通过SRXRF和来自阿根廷巴达哥尼岛的植物,藻类和细菌的元素组成,由阿根廷巴达哥尼亚和火山元素Ti,Fe和Zn测定这些生物中的植物。有趣的是,在用作污染物流(250Ωμg/ ml)中的蓝藻(26.2〜μg/ g)中发现了高度的浓度。因为砷是毒性和人类致癌物质,元素保留能力,元素 - 蛋白质关联和砷代谢作为SRXRF分析抗性生物。高容量(100-95%)的Ti?&?&?&&β&η&Δ&Δ&?x&gt ;?在通过超声波辅助的水/酒精萃取后发现保留。用SDS-PAGE分离蓝藻蛋白,电转移到硝酸纤维素,并通过SRXRF映射。观察含有Ca,Ti,Mn,Fe和/或Zn的定义蛋白质带。通过结合边缘光谱附近的SRXRF和X射线吸收来揭示它们代谢砷的能力,并发现了二甲基甲基。根据结果​​,我们推测这些蓝藻可能是有趣的水处理候选人。最后,我们得出结论,SRXRF是研究环境污染物的生物学循环的宝贵工具,包括它们的积累,分子靶标和代谢。 SRXRF还可以帮助修复研究。

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    PROBIEN (Instituto de Investigación y Desarrollo en Ingeniería de Procesos Biotecnología y Energías Alternativas) CONICET ‐ Universidad Nacional del ComahueNeuquén Patagonia Argentina;

    IFEG (Instituto de Física Enrique Gaviola) Facultad de Matemática Astronomía y Física CONICET ‐ Universidad Nacional de CórdobaCórdoba Argentina;

    Brazilian Synchrotron Light Laboratory (LNLS) Brazilian Center for Research in Energy and Materials (CNPEM)Campinas S?o Paulo Brazil;

    PROBIEN (Instituto de Investigación y Desarrollo en Ingeniería de Procesos Biotecnología y Energías Alternativas) CONICET ‐ Universidad Nacional del ComahueNeuquén Patagonia Argentina;

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  • 正文语种 eng
  • 中图分类 X射线、紫外线、红外线;
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