Abstract Pyrrolidinyl PNA polypyrrole/silver nanofoam electrode as a novel label-free electrochemical miRNA-21 biosensor
【24h】

Pyrrolidinyl PNA polypyrrole/silver nanofoam electrode as a novel label-free electrochemical miRNA-21 biosensor

机译:吡咯烷基PNA息肉/银纳米泡沫电极作为一种新的无标签电化学电化学miRNA-21生物传感器

获取原文
获取原文并翻译 | 示例
           

摘要

AbstractA label-free electrochemical miRNA biosensor was developed based on a pyrrolidinyl peptide nucleic acid (acpcPNA)/polypyrrole (PPy)/silver nanofoam (AgNF) modified electrode. The AgNF was electrodeposited as redox indicator on a gold electrode, which was then functionalized with an electropolymerized layer of PPy, a conducting polymer, to immobilize the PNA probes. The fabrication process was investigated by electrochemical impedance spectroscopy. The biosensor was used to detect miRNA-21, a biomarker abnormally expressed in most cancers. The signal was monitored by the change in current of the AgNF redox reaction before and after hybridization using cyclic voltammetry. Two PNA probe lengths were investigated and the longer probe exhibited a better performance. Nucleotide overhangs on the electrode side affected the signal more than overhangs on the solution side due to the greater insulation of the sensing surface. Under optimal conditions, the electrochemical signal was proportional to miRNA-21 concentrations between 0.20fM and 1.0nM, with a very low detection limit of 0.20fM. The biosensor showed a high specificity which could discriminate between complementary, single-, doubled-base mismatched, and non-complementary targets. Three out of the seven tested plasma samples provided detectable concentrations (63 ± 4, 111 ± 4 and 164 ± 7fM). The sensor also showed good recoveries (81–119%). The results indicated the possibilities of this biosensor for analysis without RNA extraction and/or amplification, making the sensor potentially useful for both the prognosis and diagnosis of cancer in clinical application.
机译:<![cdata [ 抽象 基于吡咯烷肽核酸(ACPCPNA)/聚吡咯(PPY)/银纳米泡沫(AGNF)开发了一种无标签的电化学MiroNA生物传感器改性电极。将AgNF电沉积在金电极上作为氧化还原指示剂电沉积,然后用多元聚合的PPY,导电聚合物官能化,以固定PNA探针。通过电化学阻抗光谱研究了制造过程。生物传感器用于检测miRNA-21,生物标志物在大多数癌症中异常表达。通过使用循环伏安法在杂交之前和之后的AgNF氧化还原反应的电流变化监测信号。研究了两个PNA探针长度,较长的探针表现出更好的性能。由于感测表面的绝缘更大,电极侧对电极侧的核苷酸突出影响的信号侧的突出侧大于突出的信号。在最佳条件下,电化学信号与0.20fm和1.0nm之间的miRNA-21浓度成比例,检测极限为0.20fm。生物传感器显示出高度的特异性,可以区分互补,单一,加倍的非匹配和非互补目标。七个测试等离子体样品中的三个提供可检测浓度(63±4,111±4和164±7fm)。传感器还显示出良好的回收率(81-119%)。结果表明,这种生物传感器的可能性用于分析,无需RNA提取和/或扩增,使得传感器可能在临床应用中的预后和诊断中可用于癌症的预后和诊断。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号