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Robust, specific ratiometric biosensing using a copper-free clicked quantum dot-DNA aptamer sensor

机译:使用无铜点击量子点-DNa适体传感器进行稳健,特定的比率生物传感

摘要

We report herein the successful preparation of a compact, functional CdSe/ZnS core/shell quantum dot (QD)-DNA conjugate via the highly efficient copper-free “click chemistry” (CFCC) between a dihydro-lipoic acid-polyethylene glycol-azide (DHLA-PEG-N3) capped QD and a cyclooctyne modified DNA. This represents an excellent balance between the requirements of high sensing sensitivity, robustness and specificity for the QD-FRET (Förster resonance energy transfer) based sensor as confirmed by a detailed FRET analysis on the QD-DNA conjugate, yielding a relatively short donor-acceptor distance of ~5.8 nm. We show not only is this CFCC clicked QD-DNA conjugate able to retain the native fluorescence quantum yield (QY) of the parent DHLA-PEG-N3 capped QD, but also is well-suited for robust, specific biosensing: it can directly quantitate pM level of both labelled and unlabelled complementary DNA probes with good SNP (single-nucleotide polymorphism) discrimination ability in complex media, e.g. 10% human serum via target-binding induced FRET changes between the QD donor and dye accepter. Further, this sensor has also been successfully exploited for the detection of pM level of a specific protein target (thrombin) via the encoded anti-thrombin aptamer sequence in the QD-DNA conjugate.
机译:我们在此报告了通过高效的无铜“点击化学”(CFCC)在二氢硫辛酸-聚乙二醇叠氮化物之间成功制备致密,功能强大的CdSe / ZnS核/壳量子点(QD)-DNA共轭物的方法(DHLA-PEG-N3)封端的QD和环辛炔修饰的DNA。对于基于QD-FRET(福斯特共振能量转移)的传感器,这代表了高感测灵敏度,鲁棒性和特异性之间的极佳平衡,这一点已通过对QD-DNA共轭物的详细FRET分析得到证实,从而产生了相对较短的供体-受体距离约为5.8 nm。我们不仅展示了这种CFCC单击的QD-DNA共轭物能够保留亲本DHLA-PEG-N3封端的QD的天然荧光量子产率(QY),而且非常适合用于鲁棒的,特异性的生物传感:它可以直接定量在复杂介质中,具有良好SNP(单核苷酸多态性)鉴别能力的标记和未标记互补DNA探针的pM水平10%的人血清通过靶标结合诱导的QRET供体和染料受体之间的FRET变化。此外,该传感器还已经成功地用于通过QD-DNA缀合物中编码的抗凝血酶适体序列检测特定蛋白质靶标(凝血酶)的pM水平。

著录项

  • 作者

    Zhang HY; Feng GQ; Guo Y; Zhou DJ;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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