Department of Human Anatomy, Institute of Neuroscience and Guangxi Key Laboratory of Brain Science, Guangxi Health Commission Key Laboratory of Basic Research on Brain Function and Disease, School of Basic Medical Sciences, Guangxi Medical University, Nanning, 530021, Guangxi, People's Republic of China.
Key Laboratory of Biological Molecular Medicine Research (Guangxi Medical University), Education Department of Guangxi Zhuang Autonomous Region, Nanning, 530021, Guangxi, People's Republic of China.
Mikrochim Acta. 2023 Jun 20;190(7):268. doi: 10.1007/s00604-023-05850-8.
A novel fluorescent strategy has been developed by using an enzymatic reaction modulated DNA assembly on graphitic carbon nitride nanosheets (CNNS) for the detection of acetylcholinesterase (AChE) activity and its inhibitors. The two-dimensional and ultrathin-layer CNNS-material was successfully synthesized through a chemical oxidation and ultrasound exfoliation method. Because of its excellent adsorption selectivity to ssDNA over dsDNA and superior quenching ability toward the fluorophore labels, CNNS were employed to construct a sensitive fluorescence sensing platform for the detection of AChE activity and inhibition. The detection was based on enzymatic reaction modulated DNA assembly on CNNS, which involved the specific AChE-catalyzed reaction-mediated DNA/Hg conformational change and subsequent signal transduction and amplification via hybridization chain reaction (HCR). Under the excitation at 485 nm, the fluorescence signal from 500 to 650 nm (λ = 518 nm) of the developed sensing system was gradually increased with increasing concentration of AChE. The quantitative determination range of AChE is from 0.02 to 1 mU/mL and the detection limit was 0.006 mU/mL. The developed strategy was successfully applied to the assay of AChE in human serum samples, and can also be used to effectively screen AChE inhibitors, showing great promise providing a robust and effective platform for AChE-related diagnosis, drug screening, and therapy.
一种新型荧光策略是通过在石墨相氮化碳纳米片(CNNS)上进行酶反应调节的 DNA 组装来开发的,用于检测乙酰胆碱酯酶(AChE)活性及其抑制剂。二维和超薄层的 CNNS 材料是通过化学氧化和超声剥落方法成功合成的。由于其对 ssDNA 的出色吸附选择性和对荧光标记物的优越淬灭能力,CNNS 被用于构建用于检测 AChE 活性和抑制的灵敏荧光传感平台。检测基于在 CNNS 上酶反应调节的 DNA 组装,涉及特定的 AChE 催化反应介导的 DNA/Hg 构象变化,以及通过杂交链式反应(HCR)进行的后续信号转导和放大。在 485nm 的激发下,开发的传感系统的荧光信号从 500nm 到 650nm(λ=518nm)逐渐增加,随着 AChE 浓度的增加而增加。AChE 的定量测定范围为 0.02 至 1mU/mL,检测限为 0.006mU/mL。该策略已成功应用于人血清样品中 AChE 的测定,还可用于有效筛选 AChE 抑制剂,为 AChE 相关诊断、药物筛选和治疗提供了强大而有效的平台。