一种基于AuPd@FexOy纳米酶的电化学传感器,用于实际样品中过氧化氢的敏感和原位定量检测。

Mengjiao Dai, Qunyan Zhu, Dongxue Han, L. Niu, Zhenxin Wang
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引用次数: 3

摘要

生物和环境中的过氧化氢(H2O2)水平对诱导细胞凋亡/细胞坏死和伤口消毒的许多生物过程有很强的影响。因此,对H2O2进行准确的原位检测非常重要。本文制备了一种稳定性好、抗干扰能力强的AuPd@FexOy纳米酶电化学(EC)传感器(AuPd@FexOy NPs/GCE),用于差分脉冲伏安法(DPV)和计时安培法双测量模式下检测H2O2。AuPd@FexOy NPs/GCE在13.0 ~ 6.0 × 103 μM (DPV测量)和50 ~ 1.0 × 103 μM(计时电流测量)范围内呈良好的线性关系,低检出限(lod)为1.6 μM (DPV测量)和3.0 μM(计时电流测量),高灵敏度为83.8 nA μM-1 cm-2 (DPV测量)和120.7 nA μM-1 cm-2(计时电流测量)。通过原位实时检测0.5 ~ 3.0 μM n -甲氧基-l -甲氧基-l -leucyl- l-苯丙氨酸(FMLP)触发MCF-7细胞释放的H2O2,以及商用消毒剂中H2O2的定量测定,证明了AuPd@FexOy NPs/GCE的实用性。
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An electrochemical sensor based on AuPd@FexOy nanozymes for a sensitive and in situ quantitative detection of hydrogen peroxide in real samples.
The hydrogen peroxide (H2O2) levels in living organisms and environment have strong effects on many biological processes inducing cell apoptosis/cell necrosis and wound disinfection. Therefore, it is important to have an accurate and in situ detection of H2O2. Herein, an AuPd@FexOy nanozyme-based electrochemical (EC) sensor (termed as AuPd@FexOy NPs/GCE) with good stability and anti-interference ability has been prepared for the detection of H2O2 by differential pulse voltammetry (DPV) and chronoamperometry dual-measurement modes. The AuPd@FexOy NPs/GCE exhibits good linear relationships in the ranges from 13.0 to 6.0 × 103 μM (DPV measurement) and 50 to 1.0 × 103 μM (chronoamperometry measurement), low detection limits (LODs) of 1.6 μM (DPV measurement) and 3.0 μM (chronoamperometry measurement) and high sensitivities of 83.8 nA μM-1 cm-2 (DPV measurement) and 120.7 nA μM-1 cm-2 (chronoamperometry measurement). The practicability of the as-prepared AuPd@FexOy NPs/GCE has been demonstrated by an in situ real-time detection of H2O2 released from adherent living MCF-7 cells triggered by varying amounts of N-formyl-L-methionyl-L-leucyl-L-phenylalanine (FMLP) from 0.5 to 3.0 μM and the quantitative determination of H2O2 in commercial disinfectants.
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