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首页> 外文期刊>Analytical chemistry >Pt-Decorated MWCNTs-lonic Liquid Composite-Based Hydrogen Peroxide Sensor To Study Microbial Metabolism Using Scanning Electrochemical Microscopy
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Pt-Decorated MWCNTs-lonic Liquid Composite-Based Hydrogen Peroxide Sensor To Study Microbial Metabolism Using Scanning Electrochemical Microscopy

机译:PT-装饰MWCNTS-贷液液体复合氢过氧化氢传感器,用于使用扫描电化学显微镜研究微生物代谢

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摘要

Hydrogen peroxide (H2O2) is a highly relevant metabolite in many biological processes, including the oral microbiome. To study this metabolite, we developed a 25 mu m diameter, highly sensitive, nonenzymatic H2O2 sensor with a detection limit of 250 nM and a broad linear range of 250 nM to 7 mM. The sensor used the synergistic activity of the catalytically active Pt nanoparticles on a high surface area multiwalled carbon nanotube and conducting ionic liquid matrix to achieve high sensitivity (2.4 +/- 0.24 mA cm(-2) mM(-1)) for H2O2 oxidation. The unique composite allowed us to miniaturize the sensor and couple it with a Pt electrode (25 mu m diameter each) for use as a dual scanning electrochemical microscopy probe. We could detect 65 +/- 10 mu M H2O2 produced by Streptococcus gordonii (Sg) in a simulated biofilm at 50 mu m above its surface in the presence of 1 mM glucose and artificial saliva solution (pH 7.2 at 37 degrees C). Because of its high stability and low detection limit, the sensor showed a promising chemical image of H2O2 produced by Sg biofilms. We were also able to detect 30 mu M H2O2 at 50 mu m above the biofilm in the presence of the H2O2-decomposing salivary lactoperoxidase and thiocyanate, which would not otherwise be possible using an existing H2O2 assay. Thus, this sensor can potentially find applications in the study of other important biological processes in a complex matrix where circumstances demand a low detection limit in a compact space.
机译:过氧化氢(H2O2)是许多生物过程中高效的代谢物,包括口腔微生物组。为了研究这种代谢物,我们开发了25 mu m的直径,高度敏感,非酶的H2O2传感器,检测限为250nm,宽的线性范围为250nm至7mm。该传感器使用催化活性Pt纳米颗粒在高表面积多壁碳纳米管上的协同活性,并导电离子液体基质以实现H 2 O 2氧化的高灵敏度(2.4 +/- 0.24 mA mM cm(-2)mm(-1)) 。独特的复合材料允许我们将传感器小型化并将其与PT电极(每次25μm直径)耦合,以用作双扫描电化学显微镜探针。我们可以在其表面在1mM葡萄糖和人工唾液溶液(pH7.2在37℃)的存在下,在模拟的生物膜中检测在其表面上方50μm的模拟生物膜中产生的65 +/-10μmH2O2。由于其高稳定性和低检测极限,传感器显示了由SG Biofilms产生的H2O2的有希望的化学图像。在H 2 O 2 - 分解唾液乳氧化酶和硫氰酸酯存在下,我们还能够在生物膜上方50μmmmmm,以其他方法检测50μmm。因此,该传感器可以在复杂矩阵中的其他重要生物过程研究中找到应用,其中情况需要紧凑空间中的低检测限。

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  • 来源
    《Analytical chemistry》 |2017年第14期|共10页
  • 作者单位

    Oregon State Univ Dept Chem Gilbert Hall 153 Corvallis OR 97331 USA;

    Oregon Hlth &

    Sci Univ Dept Restorat Dent Portland OR 97201 USA;

    Oregon State Univ Dept Chem Gilbert Hall 153 Corvallis OR 97331 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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