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High-throughput photo-chemiluminescence imaging for HIV DNA determination based on a sulfur-doped graphitic carbonitride photocatalyst

机译:基于硫掺杂石墨碳氮化物光催化剂的高通量光化学发光成像在HIV DNA测定中的应用

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摘要

In this work, a novel photo-chemiluminescence (PCL) array imaging technique was developed to detect HIV DNA sequences using water-dispersed ultrathin sulfur-doped g-C3N4 porous nanosheets (SCNNSs) as photocatalysts, with complementary chains of HIV DNA as the biorecognition elements. The PCL response was enhanced when a suitable amount of SCNNSs was used. The large specific surface area and p-conjugated structure of the SCNNSs provided a good platform for immobilizing the complementary chains of HIV DNA. When DNA complementary chains were present, some of the catalytically active sites of SCNNSs were blocked, and the PCL of the platform was weakened. When the HIV DNA was added, the DNA double chain was far away from the surfaces of the SCNNSs because the π - π stacking interactions between the formed dsDNA and SCNNSs were weak. Therefore, the addition of the target HIV DNA sequence noticeably restored the signal. In the range of 5.00 × 10~(-8) M to 200 × 10~(-8) M, the enhanced PCL response was linearly related to the concentration of the HIV DNA sequence, and the detection limit (3S/N) was 1.50 × 10~(-8) mol L~(-1). In addition, the combination of SCNNSs with complementary chains of HIV DNA successfully produced a high-performance PCL imaging sensor. In these proof-of-concept experiments, we demonstrated that our method was fast, portable, and ultrasensitive, with high throughput.
机译:本工作以水分散的超薄硫掺杂g-C3N4多孔纳米片(SCNNSs)为光催化剂,以HIV DNA互补链为生物识别元件,开发了一种新型的光化学发光(PCL)阵列成像技术,用于检测HIV DNA序列。当使用适量的SCNNS时,PCL反应增强。SCNNSs的大比表面积和p-偶联结构为固定HIV DNA互补链提供了良好的平台。当DNA互补链存在时,SCNNSs的一些催化活性位点被阻断,平台的PCL被削弱。当添加HIV DNA时,由于形成的dsDNA与SCNNSs之间的π-π堆叠相互作用较弱,因此DNA双链远离SCNNSs表面。因此,添加靶HIV DNA序列明显恢复了信号。在5.00 × 10~(-8) M至200 × 10~(-8) M范围内,增强的PCL反应与HIV DNA序列的浓度呈线性相关,检出限(3S/N)为1.50 × 10~(-8) mol L~(-1)。此外,SCNNS与HIV DNA互补链的结合成功地产生了高性能的PCL成像传感器。在这些概念验证实验中,我们证明了我们的方法快速、便携、超灵敏、高通量。

著录项

  • 来源
    《Analytical methods》 |2023年第17期|2114-2120|共7页
  • 作者单位

    Ministry of Education Key Laboratory of Analysis and Detection for Food Safety, Fujian Provincial Key Laboratory of Analysis and Detection Technology for Food Safety, Fuzhou University, Fuzhou, Fujian 350116, China;

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