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Strategy for Sensor Based on Fluorescence Emission Red Shift of Conjugated Polymers: Applications in pH Response and Enzyme Activity Detection

机译:基于共轭聚合物荧光发射红移的传感器策略:在pH响应和酶活性检测中的应用

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A new strategy was developed and applied in monitoring pH response and enzyme activity based on fluorescence emission red shift (FERS) of the conjugated polymer PPP-OR10 induced by the inner filter effect (IFE) of nitrobenzene derivatives. Neutral poly(p-phenylenes) functionalized with oligo(oxyethylene) side chains (PPP-OR10) was designed and synthesized by the Suzuki cross-coupling reaction. Nitrobenzene derivatives display different light absorption activities in the acidic or basic form due to adopting different electron-transition types. When environmental pH is higher than their pK_a values, nitrobenzene derivatives exhibit strong absorbance around 400 nm, which is close to the maximal emission of polymer PPP-OR10. As a result, the maximal emission wavelength of PPP-OR10itrobenzene derivatives red shifts with the pH value increasing. Apparently, the IFE plays a very important role in this case. A new method has been designed that takes advantage of this pH-sensitive platform to sensor a-chymotrypsin (ChT) based on the IFE of p-nitroaniline, since the absorption spectrum of p-nitroaniline, the ChT-hydrolyzed product of N-benzoyl-L-tyrosine-p-nitroaniline (BTNA), overlaps with the emission spectrum of PPP-OR10. In addition, the present approach can detect α-chymotrypsin with a detection limit of 0.1 μM, which is lower than that of the corresponding absorption spectroscopy method. Furthermore, the pH response and enzyme detections can be carried out in 10% serum, which makes this new FERS-based strategy promising in applications in more complex conditions and a broader field.
机译:基于硝基苯衍生物的内滤效应(IFE)引起的共轭聚合物PPP-OR10的荧光发射红移(FERS),开发了一种新的策略并将其应用于监测pH响应和酶活性。通过Suzuki交叉偶联反应设计并合成了具有低聚(氧乙烯)侧链(PPP-OR10)功能的中性聚(对亚苯基)。由于采用不同的电子跃迁类型,硝基苯衍生物以酸性或碱性形式显示出不同的光吸收活性。当环境pH值高于其pK_a值时,硝基苯衍生物在400 nm附近显示出强吸收性,接近于聚合物PPP-OR10的最大发射。结果,PPP-OR10 /硝基苯衍生物的最大发射波长随着pH值的增加而红移。显然,IFE在这种情况下起着非常重要的作用。设计了一种新方法,该方法利用此pH敏感平台,基于对硝基苯胺的IFE来传感α-胰凝乳蛋白酶(ChT),因为对硝基苯胺(N-苯甲酰的ChT水解产物)的吸收光谱-L-酪氨酸-对硝基苯胺(BTNA)与PPP-OR10的发射光谱重叠。另外,本方法可以以0.1μM的检出限检测α-胰凝乳蛋白酶,该检出限低于相应的吸收光谱法的检出限。此外,可以在10%的血清中进行pH响应和酶检测,这使得这种基于FERS的新策略有望在更复杂的条件和更广阔的领域中应用。

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