Nanotechnology Institute, Amirkabir University of Technology, Tehran, Iran.
Textile Engineering Department, AmirKabir University of Technology, Tehran, Iran.
Talanta. 2018 May 15;182:178-186. doi: 10.1016/j.talanta.2018.01.046. Epub 2018 Jan 31.
A sandwich-type nanostructured immunosensor based on carboxylated multi-walled carbon nanotube (CMWCNT)-embedded whiskered nanofibres (WNFs) was developed for detection of cardiac Troponin I (cTnI). WNFs were directly fabricated on glassy carbon electrodes (GCE) by removing the sacrificial component (polyethylene glycol, PEG) after electrospinning of polystyrene/CMWCNT/PEG nanocomposite nanofibres, and utilised as a transducer layer for enzyme-labeled amperometric immunoassay of cTnI. The whiskered segments of CMWCNTs were activated and utilised to immobilise anti-cTnT antibodies. It was observed that the anchored CMWCNTs within the nanofibres were suitably stabilised with excellent electrochemical repeatability. A sandwich-type immuno-complex was formed between cTnI and horseradish peroxidase-conjugated anti-cTnI (HRP-anti-cTnI). The amperometric responses of the immunosensor were studied using cyclic voltammetry (CV) through an enzymatic reaction between hydrogen peroxide and HRP conjugated to the secondary antibody. The nanostructured immunosensor delivered a wide detection range for cTnI from the clinical borderline for a normal person (0.5-2ngmL) to the concentration present in myocardial infarction patients (> 20ngmL), with a detection limit of ~ 0.04ngmL. It also showed good reproducibility and repeatability for three different cTnI concentration (1, 10 and 25ngmL) with satisfactory relative standard deviations (RSD). Hence, the proposed nanostructured immunosensor shows potential for point-of-care testing.
基于羧基化多壁碳纳米管(CMWCNT)嵌入的须状纳米纤维(WNF)的三明治型纳米结构免疫传感器被开发用于检测心肌肌钙蛋白 I(cTnI)。通过在静电纺丝聚苯乙烯/CMWCNT/PEG 纳米复合纤维后去除牺牲组分(聚乙二醇,PEG),直接在玻碳电极(GCE)上制造 WNF,并将其用作酶标记电流型免疫测定 cTnI 的换能器层。CMWCNT 的须状段被激活并用于固定抗 cTnT 抗体。观察到纤维内固定的 CMWCNT 被适当稳定,具有优异的电化学重复性。cTnI 和辣根过氧化物酶缀合的抗 cTnI(HRP-抗 cTnI)之间形成三明治型免疫复合物。通过在次级抗体结合的 HRP 与过氧化氢之间的酶反应,使用循环伏安法(CV)研究了免疫传感器的安培响应。纳米结构免疫传感器为 cTnI 提供了从正常人的临床边界(0.5-2ngmL)到心肌梗死患者中存在的浓度(>20ngmL)的宽检测范围,检测限约为~0.04ngmL。对于三种不同的 cTnI 浓度(1、10 和 25ngmL),它还表现出良好的重现性和重复性,相对标准偏差(RSD)令人满意。因此,所提出的纳米结构免疫传感器显示出用于即时护理测试的潜力。