Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, PR China.
Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, PR China.
Biosens Bioelectron. 2019 Oct 1;142:111562. doi: 10.1016/j.bios.2019.111562. Epub 2019 Aug 2.
With the aim of providing a powerful analytical tool for early diagnostics of procalcitonin (PCT), an ultrasensitive electrochemiluminescence (ECL) biosensor was developed based on a 3D well-ordered sensing interface and biocompatible signal indicator. Polyaniline nanorod arrays grafted reduced graphene oxide (PANI NRs/rGO) was hybridized with gold nanoparticles (PANI NRs/rGO-Au) as sensing substrate. To improve the specificity, HWRGWVC heptapeptide (HWR) as specific capture-antibody (Ab) immobilizer was introduced to construct a PANI NRs/rGO-Au-HWR sensing interface. Due to their synergistic effect, the proposed interface improved the incubation efficiency of antibody on substrate with faster electron-transfer for remarkable ECL enhancement. Then, ferritin (Ft) with superiority of biocompatibility was utilized to crosslink with ECL luminophore of N-(aminobutyl)-N-(ethylisoluminol) (ABEI-Ft) as signal indicator. ABEI-Ft exhibited high ECL efficiency and could capture detection-antibody (Ab) via amine reaction. Due to the enzyme-mimic property of ferric nanocore inside of Ft, abundant reactive oxygen species (ROSs) were produced in the presence of hydrogen peroxide, which further enhanced the ECL signals. On the basis, a novel biosensor was developed using PANI NRs/rGO-Au-HWR as specific sensing interface and ABEI-Ft as signal label, which performed sensitive response to PCT concentration with a wide linear range of 100 fg/mL- 50 ng/mL and a detection limit of 54 fg/mL.
为了提供一种用于降钙素原(PCT)早期诊断的强大分析工具,开发了一种基于 3D 有序传感界面和生物相容性信号指示剂的超灵敏电化学发光(ECL)生物传感器。聚苯胺纳米棒阵列接枝还原氧化石墨烯(PANI NRs/rGO)与金纳米粒子(PANI NRs/rGO-Au)杂交作为传感基底。为了提高特异性,引入了 HWRGWVC 七肽(HWR)作为特定捕获抗体(Ab)固定化剂来构建 PANI NRs/rGO-Au-HWR 传感界面。由于协同作用,所提出的界面提高了抗体在基底上的孵育效率,具有更快的电子转移,从而显著增强了 ECL。然后,利用具有生物相容性优势的铁蛋白(Ft)交联作为信号指示剂的 N-(氨基丁基)-N-(乙基异鲁米诺)(ABEI-Ft)。ABEI-Ft 表现出高 ECL 效率,并可以通过胺反应捕获检测抗体(Ab)。由于 Ft 内部铁纳米核的酶模拟特性,在存在过氧化氢的情况下会产生大量活性氧物质(ROSs),这进一步增强了 ECL 信号。在此基础上,开发了一种新型生物传感器,使用 PANI NRs/rGO-Au-HWR 作为特定传感界面,ABEI-Ft 作为信号标记,对 PCT 浓度具有敏感的响应,线性范围为 100 fg/mL-50 ng/mL,检测限为 54 fg/mL。