适体
检出限
胶体金
生物传感器
化学
电化学发光
DNA
纳米颗粒
组合化学
材料科学
核酸
线性范围
寡核苷酸
分析物
表面等离子共振
纳米技术
色谱法
分子生物学
生物分析
生物物理学
作者
Yu Ding,Ming Zhang,Cunyu Li,Bin Xie,Guiping Zhao,Yingying Sun
标识
DOI:10.1007/s10008-020-04885-8
摘要
The early monitoring of TNF-α has important clinical significance for newborn disease screening. Therefore, a reusable electrochemical aptasensor based on CeO2@Au nanorods-PAMAM-ferrocene (Ce@AuNRs-PAMAM-Fc) and enzyme-free DNA walker technology was developed for the ultrasensitive detection of TNF-α. To amplify the signal, Ce@AuNRs was prepared by in situ synthesis of gold nanoparticles on the surface of CeO2NRs and connected with PAMAM-COOH and Fc-COOH to form Ce@AuNRs-PAMAM-Fc. As signal tags, Ce@AuNRs-PAMAM-Fc could catalyze the redox reaction of H2O2 with the changes in current signals. In addition, the enzyme-free DNA walker technology was used to continuously cleave the signal probe to achieve the dual-amplification of the signal. The developed aptasensor could detect TNF-α in the range of 2 to 2 × 106 pg/mL, with a detection limit of 0.6 pg/mL. It is worth mentioning that the combination of DNA walker and strand displacement technology made the aptasensor reused up to 7 times, greatly reducing the detection cost. In summary, the highly sensitive and reusable aptasensor is a promising strategy for the early screening of neonatal diseases.
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