首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Mapping of Heavy Metal Ion Sorption to Cell-Extracellular Polymeric Substance-Mineral Aggregates by Using Metal-Selective Fluorescent Probes and Confocal Laser Scanning Microscopy
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Mapping of Heavy Metal Ion Sorption to Cell-Extracellular Polymeric Substance-Mineral Aggregates by Using Metal-Selective Fluorescent Probes and Confocal Laser Scanning Microscopy

机译:通过使用金属选择性荧光探针和共聚焦激光扫描显微镜对重金属离子吸附到细胞-细胞外聚合物-矿物质聚集体的映射

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摘要

Biofilms, organic matter, iron/aluminum oxides, and clay minerals bind toxic heavy metal ions and control their fate and bioavailability in the environment. The spatial relationship of metal ions to biomacromolecules such as extracellular polymeric substances (EPS) in biofilms with microbial cells and biogenic minerals is complex and occurs at the micro- and submicrometer scale. Here, we review the application of highly selective and sensitive metal fluorescent probes for confocal laser scanning microscopy (CLSM) that were originally developed for use in life sciences and propose their suitability as a powerful tool for mapping heavy metals in environmental biofilms and cell-EPS-mineral aggregates (CEMAs). The benefit of using metal fluorescent dyes in combination with CLSM imaging over other techniques such as electron microscopy is that environmental samples can be analyzed in their natural hydrated state, avoiding artifacts such as aggregation from drying that is necessary for analytical electron microscopy. In this minireview, we present data for a group of sensitive fluorescent probes highly specific for Fe3+, Cu2+, Zn2+, and Hg2+, illustrating the potential of their application in environmental science. We evaluate their application in combination with other fluorescent probes that label constituents of CEMAs such as DNA or polysaccharides and provide selection guidelines for potential combinations of fluorescent probes. Correlation analysis of spatially resolved heavy metal distributions with EPS and biogenic minerals in their natural, hydrated state will further our understanding of the behavior of metals in environmental systems since it allows for identifying bonding sites in complex, heterogeneous systems.
机译:生物膜,有机物,铁/铝氧化物和粘土矿物会结合有毒的重金属离子,并控制其在环境中的命运和生物利用度。在具有微生物细胞和生物矿物的生物膜中,金属离子与生物大分子(例如细胞外聚合物质(EPS))之间的空间关系复杂,且发生在微米和亚微米级别。在这里,我们回顾了用于共聚焦激光扫描显微镜(CLSM)的高选择性,高灵敏度金属荧光探针的应用,该探针最初是为生命科学开发的,并提出了其作为在环境生物膜和细胞EPS中绘制重金属的有力工具的适用性-矿物骨料(CEMA)。与其他技术(例如电子显微镜)相比,将金属荧光染料与CLSM成像结合使用的好处在于,可以在其自然水合状态下分析环境样品,避免了分析电子显微镜所必需的伪像(例如由于干燥而产生的聚集)。在此小型审查中,我们提供了一组高度特异性针对Fe 3 + ,Cu 2 + ,Zn 2 + ,和Hg 2 + ,说明了其在环境科学中的应用潜力。我们结合其他标记CEMA成分(例如DNA或多糖)的荧光探针评估其应用,并为荧光探针的潜在组合提供选择指南。对空间分辨的重金属分布与天然水合状态的EPS和生物矿物的相关性分析将使我们进一步了解金属在环境系统中的行为,因为它可以识别复杂的异质系统中的结合位点。

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