4.6 Article

MoS2/Pt nanocomposite-functionalized micro-needle for real-time monitoring of hydrogen peroxide release from living cells

Journal

ANALYST
Volume 142, Issue 22, Pages 4322-4329

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c7an01446e

Keywords

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Funding

  1. National Natural Science Foundation of China [21275040, 21475034, 21505037]
  2. Hubei Provincial Collaborative Innovation Center of Preventive Treatment by Acupuncture and Moxibustion

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This work describes the adaptive use of a conventional stainless steel acupuncture needle as the electrode substrate for construction of a molybdenum disulfide (MoS2) and platinum nanoparticles (PtNPs) layermodified microneedle sensor for real-time monitoring of hydrogen peroxide (H2O2) 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 MoS2 nanosheet and Pt nanoparticles on the needle tip as the sensing interface. Electrochemical study demonstrated that the MoS2/PtNPs nanocompositemodified needle exhibited excellent catalytic performance and low over-potential toward the reduction of H2O2. Not only did the microneedle achieve a wide linear range from 1 to 100 mu mol L-1 with a limit of detection down to 0.686 mu mol L-1, but it also realized the highly specific detection of H2O2. Owing to these remarkable analytical advantages, the prepared microneedle was applied to determine H2O2 release from living cells with satisfactory results. The MoS2/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.

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