Wei Pengyan, Li Zhuozhe, E Yifeng, Jiang Yuying, Chen Peng, Li Li, Qian Kun
Jinzhou Medical University, Jinzhou, 121001, People's Republic of China.
Key Laboratory of Functional Inorganic Material Chemistry, School of Chemistry and Materials Science, Heilongjiang University, Harbin, 150080, People's Republic of China.
Mikrochim Acta. 2023 Feb 18;190(3):96. doi: 10.1007/s00604-023-05682-6.
The accurate and rapid detection for the nucleoside reverse transcriptase inhibitor lamivudine (LAM, 3TC) in cellular systems is always a challenge in the clinic application. Here, a sensitive Cu and Ni nano cluster sensor for LAM is generated under hydrothermal conditions.The Cu and Ni atoms are highly dispersed and aggregated in the nanosized opening pore windows of the synthesized LTA zeolite, through the diatomic synergistic contribution of Cu and Ni and the enrichment of zeolitic channel pores. Using differential pulse voltammetry (DPV), the detection limit (LOD) of LAM at the potential (- 0.15 V) can reach 0.001 pM and the linear range is 0.002 pM-0.002 μM. Since the nano cluster is separated and restricted by the nanosized windows of the zeolite framework, the sensor provides high stability, good recovery (92.5-109%) and RSD (0.8-3.2%) in the analysis of tap water, RPMI 1640 medium, and rabbit serum. The Cu/Ni/LTA zeolite-modified glassy carbon electrode (Cu/Ni/LTA/GCE) exhibits excellent catalytic performance for LAM with high selectivity over potentially interfering agents. A sensitive Cu and Ni nano cluster sensor for LAM is generated in the hydrothermal condition that the Cu and Ni atoms are highly dispersed and aggregated in the nanosized opening pore windows of the as-synthesized LTA zeolite. Through the diatomic synergistic contribution of Cu and Ni and the enrichment of zeolitic channel pores, the observed limit of detection (LOD) can reach 0.001 pM under differential pulse voltammetry (DPV) method with a wide linear relationship to 0.002 μM.
在细胞系统中准确快速地检测核苷类逆转录酶抑制剂拉米夫定(LAM,3TC)在临床应用中一直是一项挑战。在此,在水热条件下制备了一种用于检测LAM的灵敏的铜镍纳米簇传感器。通过铜和镍的双原子协同作用以及沸石通道孔的富集,铜和镍原子高度分散并聚集在合成的LTA沸石的纳米级开孔窗口中。采用差分脉冲伏安法(DPV),在电位(-0.15 V)下LAM的检测限(LOD)可达0.001 pM,线性范围为0.002 pM - 0.002 μM。由于纳米簇被沸石骨架的纳米级窗口分离和限制,该传感器在分析自来水、RPMI 1640培养基和兔血清时具有高稳定性、良好的回收率(92.5 - 109%)和相对标准偏差(0.8 - 3.2%)。铜/镍/LTA沸石修饰的玻碳电极(Cu/Ni/LTA/GCE)对LAM表现出优异的催化性能,对潜在干扰物具有高选择性。在水热条件下制备了一种用于检测LAM的灵敏的铜镍纳米簇传感器,其中铜和镍原子高度分散并聚集在合成的LTA沸石的纳米级开孔窗口中。通过铜和镍的双原子协同作用以及沸石通道孔的富集,在差分脉冲伏安法(DPV)下观察到的检测限(LOD)可达0.001 pM,与0.002 μM具有较宽的线性关系。