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Poly(beta-cyclodextrin) enhanced fluorescence coupled with specific reaction for amplified detection of GSH and trypsin activity

机译:聚(β-环糊精)增强荧光与特定反应的荧光,用于扩增的GSH和胰蛋白酶活性

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摘要

Up to now, the successful fabrication of efficient specific reaction-based sensing systems for amplification signal-enhanced detection of reactive species remains an unsolved problem. To address this issue, we describe herein a universal -cyclodextrin polymer (-CDP)-based sensing platform that uses an amplified fluorescence assay for sensitive detection of glutathione (GSH) and trypsin activity. More specifically, the negatively charged peptide Py-GC adsorbed on the surfaces of MnO2 nanotubes via electrostatic interaction. Upon addition of GSH, MnO2 was reduced to Mn2+ and Py-GC was separated far from the nanoquencher, generating an activated fluorescence signal. It was worth noting that free pyrene could easily enter the hydrophobic cavity of -CDP, accompanied by significant fluorescence enhancement. The nanoprobe exhibits high sensitivity and selectivity to GSH as well as excellent biocompatibility, making it a promising probe for imaging of endogenous GSH in living cells. As a proof-of-principle, we use this approach to quantify trypsin activity on the basis of the trypsin-catalyzed hydrolysis reaction of cytochrome c (Cyt c) in human serum. As a universal CDP-based signal amplification reporter, this prototype can be applied to a sensitive and versatile sensing platform for multi-analyses by selecting suitable switched-reagents, thus inspiring the new strategies for bioanalysis.
机译:到目前为止,用于扩增信号增强检测的有效特定反应的传感系统的成功制造仍然是未解决的问题。为了解决这个问题,我们在此描述了一种通用的环胞素蛋白聚合物(-CDP)的感应平台,其使用扩增的荧光测定来敏感检测谷胱甘肽(GSH)和胰蛋白酶活性。更具体地,通过静电相互作用将带负电荷的肽Py-GC吸附在MnO2纳米管的表面上。在添加GSH后,将MnO 2还原为Mn2 +,并且分离Py-GC远离纳米误缝,产生活化的荧光信号。值得注意的是,游离芘可以容易地进入-CDP的疏水性腔,伴有显着的荧光增强。 Nanoprobe对GSH表现出高敏感性和选择性,以及优异的生物相容性,使其成为活细胞内源性GSH成像的有希望的探针。作为原则上的原则,我们使用这种方法在人血清中的细胞色素C(Cyt C)的胰蛋白酶催化水解反应的基础上来量化胰蛋白酶活性。作为基于通用CDP的信号放大报告称,通过选择合适的开关试剂,可以将该原型应用于敏感和通用的传感平台,从而激发了生物分析的新策略。

著录项

  • 来源
    《New Journal of Chemistry》 |2018年第21期|共8页
  • 作者单位

    Xinxiang Med Univ Sch Pharm Xinxiang 453003 Henan Peoples R China;

    Xinxiang Med Univ Sch Pharm Xinxiang 453003 Henan Peoples R China;

    Xinxiang Med Univ Sch Pharm Xinxiang 453003 Henan Peoples R China;

    Xinxiang Med Univ Xinxiang Neurosense &

    Control Engn Technol Ctr Xinxiang 453003 Henan Peoples R China;

    Xinxiang Med Univ Sch Pharm Xinxiang 453003 Henan Peoples R China;

    Xinxiang Med Univ Sch Pharm Xinxiang 453003 Henan Peoples R China;

    Xinxiang Med Univ Sch Pharm Xinxiang 453003 Henan Peoples R China;

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

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