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Novel electrochemical biosensor based on functional composite nanofibers for sensitive detection of p53 tumor suppressor gene

机译:基于功能性复合纳米纤维的新型电化学生物传感器用于p53抑癌基因的灵敏检测

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摘要

A novel electrochemical biosensor based on functional composite nanofibers for sensitive hybridization detection of p53 tumor suppressor using methylene blue (MB) as an electrochemical indicator is developed. The carboxylated multi-walled carbon nanofubes (MWNTs) doped nylon 6 (PA6) composite nanofibers (MWNTs-PA6) was prepared using electrospinning, which served as the nanosized backbone for pyrrole (Py) electropolymerization. The functional composite nanofibers (MWNTs-PA6-PPy) used as supporting scaffolds for ssDNA immobilization can dramatically increase the amount of DNA attachment and the hybridization sensitivity. The biosensor displayed good sensitivity and specificity. The target wild type p53 sequence (wtp53) can be detected as low as 50 fM and the discrimination is up to 57.5% between the wtp53 and the mutant type p53 sequence (mtp53). It holds promise for the early diagnosis of cancer development and monitoring of patient therapy.
机译:基于亚甲基蓝(MB)作为电化学指示剂,开发了一种基于功能复合纳米纤维的新型电化学生物传感器,用于p53肿瘤抑制物的灵敏杂交检测。使用静电纺丝制备了羧基化的多壁碳纳米纤维(MWNTs)掺杂尼龙6(PA6)复合纳米纤维(MWNTs-PA6),该纤维用作吡咯(Py)电聚合的纳米骨架。用作ssDNA固定化支撑支架的功能性复合纳米纤维(MWNTs-PA6-PPy)可以显着增加DNA附着量和杂交敏感性。该生物传感器显示出良好的敏感性和特异性。可以检测到低至50 fM的目标野生型p53序列(wtp53),wtp53与突变型p53序列(mtp53)的区分度高达57.5%。它为癌症发展的早期诊断和患者治疗监测提供了希望。

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