Detection of B-type natriuretic peptide by establishing a low-cost and replicable fluorescence resonance energy transfer platform

费斯特共振能量转移 检出限 利钠肽 猝灭(荧光) 化学 化学发光 荧光 生物标志物 能量转移 接收机工作特性 共振(粒子物理) 色谱法 内科学 医学 心力衰竭 生物化学 物理 粒子物理学 量子力学 分子物理学
作者
Aiping Tu,Shang Jing-chuan,Yi Wang,Di Li,Laicheng Liu,Zongjie Gan,Yibing Yin,Pu Zhang
出处
期刊:Mikrochimica Acta [Springer Nature]
卷期号:187 (6) 被引量:17
标识
DOI:10.1007/s00604-020-04247-1
摘要

Aiming at the establishment of a sensitive and specific diagnostic method for early heart failure (HF), we developed a cost-effective fluorescence resonance energy transfer (FRET) platform for the detection of B-type natriuretic peptide (BNP), a characteristic biomarker of HF. Graphene oxide (GO) was selected as the FRET receptor in view of its advantages including commercial availability, low-cost and chemical stability, and dye-modified aptamer was used as the energy donor of FRET as well as in charge of the specific recognition of BNP. Based on the ON (strong emission) and OFF (quenching) states of FRET in the presence and absence of BNP, respectively, specific detection of BNP was achieved in the range 0.074–0.56 pg/mL with a limit of detection as low as 45 fg/mL (3σ). This FRET platform was applied to detect BNP in 45 blood samples to demonstrate its practicability in clinical diagnosis. Compared to the commonly used Siemens method (chemiluminescence immunoassay, CLIA) in hospital, our approach is more accurate and specific for HF diagnosis with areas under the receiver operating characteristic curves of 0.869 (95% CI 0.733–1.00, P < 0.05) vs 0.850 (95% CI 0.703–0.997, P < 0.05) and specificity of 68.8% vs 65.6%. This platform is promising in early diagnosis of HF through ultrasensitive and specific detection of BNP.

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