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首页> 外文期刊>Analytical chemistry >NIR Phosphorescent Intramolecularly Bridged Benzoporphyrins and Their Application in Oxygen-Compensated Glucose Optode
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NIR Phosphorescent Intramolecularly Bridged Benzoporphyrins and Their Application in Oxygen-Compensated Glucose Optode

机译:NIR磷光分子内桥接苯并卟啉及其在氧气补偿葡萄糖光电磁石中的应用

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摘要

A glucose optode measuring the internal oxygen gradient is presented. The multilayer biosensor is composed of (i) analyte-impermeable transparent support, (ii) first oxygen-sensing layer combined with an enzymatic layer, (iii) diffusion barrier, and (iv) second oxygen-sensing layer. To make this design suitable for measurement in subcutaneous tissue, a pair of NIR phosphorescent indicators with very different spectral properties is chosen. Combination of a conventional Pt(II) tetrabenzoporphyrin dye (absorption and emission maxima at 617 and 772 nm, respectively) used in the first layer and a new intramolecularly bridged Pt(II) complex (absorption and emission maxima at 673 and 872 nm, respectively) in the second layer enables efficient separation of both emission signals. This specially designed dye class is accessible via Scholl-reaction from tetraphenyltetrabenzoporphyrin complexes. For the first time, the new optode allows simultaneous glucose and oxygen measurement in a single spot and therefore accurate compensation of oxygen heterogeneities resulting from fluctuations in the tissue. The presented material covers the dynamic ranges from 0 to 150 hPa O_(2) and from 0 to 360 mg/dL (20 mM) glucose (at 37 °C).
机译:提出了一种测量内氧梯度的葡萄糖光电极。多层生物传感器由(I)分析物透明载体组成,(ii)第一氧传感层与酶促层,(iii)扩散屏障和(iv)第二氧传感层组成。为了使这种设计适用于皮下组织中的测量,选择具有非常不同光谱性质的一对荧光荧光指示剂。常规pt(ii)四苯并卟啉染料(分别在617和772nm处的吸收和发射最大值)的组合分别用于第一层和新的分子内桥接Pt(ii)复合物(在673和872nm处的吸收和发射最大值) )在第二层中,可以有效地分离发射信号。这种专门设计的染料级别可通过来自四苯基四苯并卟啉络合物的Scholl-反应来访问。首次,新光电极允许在单点同时葡萄糖和氧气测量,因此因此可以精确补偿由组织中的波动产生的氧异质性。所提出的材料覆盖从0到150 HPA O_(2)和0至360mg / dL(20mm)葡萄糖(在37℃)的动态范围。

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  • 来源
    《Analytical chemistry》 |2018年第4期|共8页
  • 作者单位

    Institute of Analytical Chemistry and Food Chemistry Graz University of Technology Stremayrgasse 9 8010 Graz Austria;

    Institute of Solid State Physics Graz University of Technology Petersgasse 16 8010 Graz Austria;

    Institute of Analytical Chemistry and Food Chemistry Graz University of Technology Stremayrgasse 9 8010 Graz Austria;

    Institute of Analytical Chemistry and Food Chemistry Graz University of Technology Stremayrgasse 9 8010 Graz Austria;

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