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MoS/Pt 纳米复合材料功能化微针用于实时监测活细胞中过氧化氢的释放。

MoS/Pt nanocomposite-functionalized microneedle for real-time monitoring of hydrogen peroxide release from living cells.

机构信息

School of Laboratory Medicine, Hubei University of Chinese Medicine, 1 Huangjia Lake West Road, Wuhan 430065, PR China.

出版信息

Analyst. 2017 Nov 6;142(22):4322-4329. doi: 10.1039/c7an01446e.

Abstract

This work describes the adaptive use of a conventional stainless steel acupuncture needle as the electrode substrate for construction of a molybdenum disulfide (MoS) and platinum nanoparticles (PtNPs) layer-modified microneedle sensor for real-time monitoring of hydrogen peroxide (HO) release from living cells. To construct the nanocomposite-functionalized microneedle, the needle surface was first coated with a gold film by ion sputtering to enhance the conductivity. Subsequently, an electrochemical deposition method was successfully employed to deposit MoS nanosheet and Pt nanoparticles on the needle tip as the sensing interface. Electrochemical study demonstrated that the MoS/PtNPs nanocomposite-modified needle exhibited excellent catalytic performance and low over-potential toward the reduction of HO. Not only did the microneedle achieve a wide linear range from 1 to 100 μmol L with a limit of detection down to 0.686 μmol L, but it also realized the highly specific detection of HO. Owing to these remarkable analytical advantages, the prepared microneedle was applied to determine HO release from living cells with satisfactory results. The MoS/PtNPs nanocomposite-functionalized microneedle sensor is simple and affordable, and can serve as a promising electrochemical nonenzymatic sensing platform. Moreover, this superfine needle sensor shows great potential for real-time monitoring of reactive oxygen species in vivo with minimal damage.

摘要

这项工作描述了一种常规不锈钢针灸针的适应性应用,将其作为电极衬底,用于构建二硫化钼 (MoS) 和铂纳米粒子 (PtNPs) 层修饰的微针传感器,用于实时监测活细胞中过氧化氢 (HO) 的释放。为了构建纳米复合材料功能化的微针,首先通过离子溅射在针表面镀上金膜以提高导电性。随后,成功地采用电化学沉积方法将 MoS 纳米片和 Pt 纳米粒子沉积在针尖上作为传感界面。电化学研究表明,MoS/PtNPs 纳米复合材料修饰的针在还原 HO 方面表现出优异的催化性能和低过电势。这种微针不仅实现了从 1 到 100 μmol L 的宽线性范围,检测限低至 0.686 μmol L,而且实现了对 HO 的高度特异性检测。由于这些显著的分析优势,所制备的微针被应用于测定活细胞中 HO 的释放,结果令人满意。MoS/PtNPs 纳米复合材料功能化的微针传感器简单且经济实惠,可作为一种有前途的电化学非酶传感平台。此外,这种超微针传感器具有在体内实时监测活性氧的巨大潜力,对组织损伤极小。

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