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Boronic Acid Functionalized Aza-Bodipy (azaBDPBA) based Fluorescence Optodes for the Analysis of Glucose in Whole Blood

机译:硼酸官能化的氮杂双歧(azaBDPBA)基荧光电极用于全血中葡萄糖的分析

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摘要

A near-infrared fluorescent dye (aza-bodipy or azaBDPBA) functionalized with boronic acid groups was synthesized for the preparation of optodes to measure glucose in 40-fold diluted whole blood. Boronic acid groups as an electron,deficient group on aza-bodipy was reacted with hydrogen peroxide into an electron-rich phenolic group leading to the red-shift of emission wavelength from 682 to 724 nm. The emission in near-infrared region offered a low level of background interference from whole blood. Also, the dual-wavelength emission guaranteed our probe to measure glucose in whole blood accurately after the conversion of glucose into hydrogen peroxide using glucose oxidase. The measuring range of glucose from 0.2 to 200 mM in the buffer was achieved with high selectivity. To facilitate the blood test, the probe was immobilized into thin hydrophobic polymer films to prepare the disposal glucose optode, which could detect glucose in the solution from 60 mu M to 100 mM. The concentration of glucose in 40-fold diluted whole blood was determined using our optode and the reference method, respectively. The consistence in the concentration obtained from these two assays revealed that our azaBDPBA-based optodes were promising for the clinic assay of glucose in the whole blood.
机译:合成了用硼酸基团官能化的近红外荧光染料(aza-bodipy或azaBDPBA),用于制备检测40倍稀释全血中葡萄糖的optode。氮杂基上的硼酸基团作为缺电子的基团与过氧化氢反应成富含电子的酚基团,导致发射波长从682 nm移至724 nm。近红外区域的发射提供了全血低水平的背景干扰。同样,双波长发射保证了我们的探头能够在使用葡萄糖氧化酶将葡萄糖转化为过氧化氢后准确地测量全血中的葡萄糖。缓冲液中葡萄糖的测量范围为0.2至200 mM,具有很高的选择性。为了便于进行血液测试,将探针固定在疏水性聚合物薄膜上以制备可弃置的葡萄糖光电二极管,该电极可检测溶液中60至100 mM的葡萄糖。使用我们的optode和参考方法分别测定了40倍稀释的全血中的葡萄糖浓度。从这两种测定获得的浓度的一致性表明,我们基于azaBDPBA的光电二极管有望用于临床全血葡萄糖测定。

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