School of Chemistry and Chemical Engineering, Anhui Province Key Laboratory of Coal Clean Conversion and High Valued Utilization, Hexian Development Institute of Chemical Industry, Anhui University of Technology, Maanshan 243002, China.
Analyst. 2020 Mar 16;145(6):2204-2211. doi: 10.1039/d0an00156b.
In this work, the electrochemiluminescence (ECL) behavior of a luminol-H2O2 system was studied on a black phosphorus nanosheet (BPN) modified electrode. A quenching effect of BPNs on luminol ECL was achieved based on ECL resonance energy transfer (ECL-RET) with excited state luminol as the energy donor and BPNs as the energy acceptor. Protamine could bind on the surface of BPNs through electrostatic interactions, which can cut off the energy transfer route between luminol and BPNs to restore the ECL signal. The immobilized protamine could be hydrolyzed by trypsin, as a result, the BPN surface was exposed and RET occurred again, resulting in an instant decrease in the ECL intensity. The reduced ECL signals varied linearly with trypsin concentrations, and could be indirectly used in the sensitive detection of trypsin in the range of 100 ng mL-1 to 5 μg mL-1. The detection limit of the biosensor was calculated at levels down to 6.33 × 10-8 g mL-1 (3σ). The proposed ECL sensor was successfully used in the detection of trypsin in serum samples. The results reveal a novel quenching effect of BP nanomaterials on ECL, which will further expand its application in ECL biosensing for proteins.
在这项工作中,我们研究了在黑磷纳米片(BPN)修饰电极上的鲁米诺-H2O2 体系的电化学发光(ECL)行为。BPN 对鲁米诺 ECL 的猝灭效应是基于 ECL 共振能量转移(ECL-RET)实现的,其中激发态鲁米诺作为能量供体,BPN 作为能量受体。鱼精蛋白可以通过静电相互作用结合到 BPN 的表面,从而切断鲁米诺和 BPN 之间的能量转移途径,恢复 ECL 信号。固定的鱼精蛋白可以被胰蛋白酶水解,结果,BPN 表面暴露,再次发生 RET,导致 ECL 强度瞬间降低。还原的 ECL 信号与胰蛋白酶浓度呈线性变化,可间接用于在 100ng mL-1 至 5μg mL-1 的范围内灵敏检测胰蛋白酶。该生物传感器的检测限计算为低至 6.33×10-8 g mL-1(3σ)。该提出的 ECL 传感器已成功用于血清样品中胰蛋白酶的检测。结果表明 BP 纳米材料对 ECL 具有新颖的猝灭效应,这将进一步扩展其在蛋白质 ECL 生物传感中的应用。