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过氧化物酶包被的 Zn/Co-沸石咪唑骨架纳米片在 ZnCoO 纳米线阵列上用于检测来自线粒体超氧阴离子的 HO。

Peroxidase-encapsulated Zn/Co-zeolite imidazole framework nanosheets on ZnCoO nanowire array for detecting HO derived from mitochondrial superoxide anion.

机构信息

Henan Joint International Research Laboratory of Environmental Pollution Control Materials, College of Chemistry and Molecular Sciences Henan University, Kaifeng, Henan Province, 475004, PR China.

Henan Joint International Research Laboratory of Environmental Pollution Control Materials, College of Chemistry and Molecular Sciences Henan University, Kaifeng, Henan Province, 475004, PR China.

出版信息

Biosens Bioelectron. 2023 Oct 1;237:115547. doi: 10.1016/j.bios.2023.115547. Epub 2023 Jul 23.

Abstract

In this work, we have developed a nanocomposite consisting of horseradish peroxidase (HRP)-encapsulated 2D Zn-Co zeolite imidazole framework (ZIF) nanosheets strung on a ZnCoO nanowire array on a Ti support (denoted as 2D-Zn/Co-ZIF(HRP)|ZnCoO|Ti). This nanocomposite was then applied to constructing an electrochemical biosensor for detecting HO derived from O released by mitochondria in living cells. This sensing platform shows excellent catalytic performance towards HO, attributable to the enzyme/metal-catalytic effect of HRP and Zn/Co-ZIF. The unique nano-string structure alleviates the aggregation of Zn/Co-ZIF nanosheets, readily exposes the catalytic active sites, protects the bioactivity of HRP, and reduces the charge/mass transfer pathway within Zn/Co-ZIF. The 2D-Zn/Co-ZIF(HRP)|ZnCoO|Ti biosensor offers two linear ranges of 0.2-10 μ M and 10-1100 μ M, a limit of detection of 0.082 μ M, a sensitivity of 3.3 mA mM cm, good selectivity and stability over 40 days for HO detection. After treating with specific mitochondrial complex inhibitors, the chronoamperometric results at the 2D-Zn/Co-ZIF(HRP)|ZnCoO|Ti confirmed complex I and III within the mitochondria electron transfer chain as the main electron leakage sites. This biosensor may contribute to the development of diagnostic health-care devices that shed light on the precaution and even treatment of oxidative stress diseases.

摘要

在这项工作中,我们开发了一种由辣根过氧化物酶(HRP)封装的二维 Zn-Co 沸石咪唑骨架(ZIF)纳米片串在 Ti 载体上的 ZnCoO 纳米线阵列组成的纳米复合材料(表示为 2D-Zn/Co-ZIF(HRP)|ZnCoO|Ti)。然后,我们将这种纳米复合材料应用于构建电化学生物传感器,用于检测来自活细胞中线粒体释放的 O 产生的 HO。这个传感平台对 HO 表现出优异的催化性能,这归因于 HRP 和 Zn/Co-ZIF 的酶/金属催化作用。独特的纳米串结构缓解了 Zn/Co-ZIF 纳米片的聚集,容易暴露催化活性位点,保护 HRP 的生物活性,并减少 Zn/Co-ZIF 内的电荷/质量转移途径。2D-Zn/Co-ZIF(HRP)|ZnCoO|Ti 生物传感器提供了 0.2-10 μM 和 10-1100 μM 的两个线性范围,检测限为 0.082 μM,灵敏度为 3.3 mA mM cm,对 HO 检测具有良好的选择性和稳定性,超过 40 天。在用特定的线粒体复合物抑制剂处理后,2D-Zn/Co-ZIF(HRP)|ZnCoO|Ti 的计时电流结果证实线粒体电子传递链中的复合物 I 和 III 是主要的电子泄漏位点。该生物传感器有助于开发诊断保健设备,为预防甚至治疗氧化应激疾病提供了思路。

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