Coll Food Sci & Light Ind, Nanjing Tech University, Nanjing, 211800, China.
School of Food Science, Nanjing Xiaozhuang University, Nanjing, 211171, China.
Biosens Bioelectron. 2023 Oct 1;237:115452. doi: 10.1016/j.bios.2023.115452. Epub 2023 Jun 7.
Color-switch electrochemiluminescence (ECL) sensing platform based on a dual-bipolar electrode (D-BPE) is reported in this work. The D-BPE was composed of a cathode filled with buffer and two anodes filled with [Ru(bpy)]-TPrA and luminol-HO solutions, respectively. Both anodes were modified with capture DNA and served as ECL reporting platforms. After introducing ferrocene-labeled aptamer (Fc-aptamer) on both anodes, the ECL emission signal of the [Ru(bpy)] was difficult to be observed (anode 1), while luminol emitted a strong and visible ECL signal (anode 2). Ferrocene (Fc) did not only prevent the oxidation of [Ru(bpy)] due to its lower oxidation potential, its oxidation product Fc also quenched the [Ru(bpy)] ECL through efficient energy transfer. For luminol, Fc catalyzes the accelerated formation of the excited-state of the luminol anion radical, which leads to the enhancement of the luminol ECL. In the presence of food-borne pathogens, the aptamer was assembled with them, leading to the leaving of Fc from the surface of the D-BPE anodes. The ECL intensity of [Ru(bpy)] was enlarged, meanwhile, the blue emission signal of luminol became weakened. By self-calibrating the ratio of the two signals, 1-10 CFU mL food-borne pathogenic bacteria can be sensitively detected with a detection limit of 1 CFU mL. Ingeniously, the color-switch biosensor can be used to detect S. aureus, E. coli and S. typhimurium by assembling the corresponding aptamers onto the D-BPE anodes.
本工作报道了基于双极电极(D-BPE)的双色电化学发光(ECL)传感平台。D-BPE 由阴极和两个阳极组成,阴极中充满缓冲液,两个阳极中分别填充[Ru(bpy)]-TPrA 和鲁米诺-HO 溶液。两个阳极均修饰有捕获 DNA,并作为 ECL 报告平台。在两个阳极上引入了巯基化的适配体(Fc-aptamer)后,[Ru(bpy)]的 ECL 发射信号难以观察到(阳极 1),而鲁米诺则发出强而可见的 ECL 信号(阳极 2)。由于其较低的氧化电位,铁(Fc)不仅阻止了[Ru(bpy)]的氧化,其氧化产物 Fc 还通过有效的能量转移猝灭了[Ru(bpy)]的 ECL。对于鲁米诺,Fc 催化加速形成鲁米诺阴离子自由基的激发态,从而增强了鲁米诺的 ECL。在食源性病原体存在的情况下,适配体与其组装,导致 Fc 从 D-BPE 阳极表面离开。[Ru(bpy)]的 ECL 强度增大,同时鲁米诺的蓝色发射信号减弱。通过对两个信号的比率进行自校准,可以灵敏地检测到 1-10 CFU mL 的食源性病原体,检测限为 1 CFU mL。巧妙的是,通过将相应的适配体组装到 D-BPE 阳极上,该颜色切换生物传感器可用于检测金黄色葡萄球菌、大肠杆菌和鼠伤寒沙门氏菌。