首页> 外文期刊>Analytica chimica acta >Intracellularly grown gold nanoislands as SERS substrates for monitoring chromate, sulfate and nitrate localization sites in remediating bacteria biofilms by Raman chemical imaging
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Intracellularly grown gold nanoislands as SERS substrates for monitoring chromate, sulfate and nitrate localization sites in remediating bacteria biofilms by Raman chemical imaging

机译:细胞内生长的金纳米岛作为SERS底物,用于通过拉曼化学成像监测修复细菌生物膜中的铬酸盐,硫酸盐和硝酸盐本地化位置

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Understanding the chemical composition of biofilm matrices is vital in different fields of biology such as surgery, dental medicine, synthetic grafts and bioremediation. The knowledge of biofilm development, composition, active reduction sites and remediation efficacy will help in the development of effective solutions and evaluation of remediating approaches prior to implementation. Surface-enhanced Raman spectroscopy (SERS) based imaging is an invaluable tool to obtain an understanding of the remediating efficacy of microorganisms and its role in the formation of organic and inorganic compounds in biofilms. We demonstrate for the first time, the presence of chromate, sulfate, nitrate and reduced triva-lent chromium in soil biofilms. In addition, we demonstrate that SERS imaging was able to validate two observations made by previous studies on chromate/sulfate and chromateitrate interactions in She-wanella oneidensis MR-1 biofilms. Additionally, we show a detailed Raman mapping based evidence of the existence of chromate-sulfate competition for cellular entry. Subsequently, we use Raman mapping to study the effect of nitrate on chromate reduction. The findings presented in this paper are among the first to report - detection of multiple metallic ions in bacterial biofilms using intracellular SERS substrates. Such a detailed characterization of biofilms using gold nanoislands based SERS mapping substrate can be extended to study cellular localization of other metallic ions and chemical species of biological and toxicological significance and their effect on reduction reactions in bacterial biofilms.
机译:了解生物膜基质的化学组成对于生物学的不同领域至关重要,例如外科手术,牙科医学,合成移植物和生物修复。生物膜形成,组成,活性还原位点和修复功效的知识将有助于在开发之前开发有效的解决方案并评估修复方法。基于表面增强拉曼光谱(SERS)的成像是了解微生物修复功效及其在生物膜中有机和无机化合物形成中的作用的宝贵工具。我们首次证明了土壤生物膜中铬酸盐,硫酸盐,硝酸盐和还原型三价铬的存在。此外,我们证明SERS成像能够验证以前的研究对She-wanella oneidensis MR-1生物膜中铬酸盐/硫酸盐和铬酸盐/硝酸盐相互作用的两个观察结果。另外,我们显示了基于拉曼作图的详细证据,表明存在铬酸盐-硫酸盐竞争细胞进入竞争。随后,我们使用拉曼映射研究硝酸盐对铬酸盐还原的影响。本文提出的发现是第一个报告的发现-使用细胞内SERS底物检测细菌生物膜中的多种金属离子。使用基于金纳米岛的SERS作图底物对生物膜的这种详细表征可以扩展到研究其他金属离子的细胞定位以及具有生物学和毒理学意义的化学物种及其对细菌生物膜还原反应的影响。

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