Literature DB >> 28422478

Reduction of Ammineruthenium(III) by Sulfide Enables In Vivo Electrochemical Monitoring of Free Endogenous Hydrogen Sulfide.

Shujun Wang1, Xiaomeng Liu1, Meining Zhang1.   

Abstract

The discovery of endogenous sulfide in mammalian brain opens up a door to understanding of the physiological function of hydrogen sulfide (H2S). The transformation of different forms of sulfide (i.e., S2-, HS-, H2S, bound sulfane sulfur, et al.) in various physiological conditions hurdles the direct detection of hydrogen sulfide in vivo. Here, we find that ammineruthenium(III) (Ru(NH3)63+) can catalyze the electrochemical oxidation of free sulfide including HS- and H2S in a neutral solution (pH 7.4). This property is used to constitute an electrochemical mechanism for selective detection of hydrogen sulfide. By coupling in vivo microdialysis with selective electrochemical detection, we successfully developed an integrated microchip-based online electrochemical system (OECS) for continuous monitoring of free endogenous hydrogen sulfide in the central nervous system (CNS). The microchip-based OECS is well responsive toward hydrogen sulfide with high stability, sensitivity and selectivity. Compared with the existing methods, the OECS does not require offline treatment of brain tissue or adjustment of the detection solutions into acidic or strong basic atmosphere. These priorities essentially enable the system to accurately and reliably track dynamics of hydrogen sulfide in the CNS.

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Year:  2017        PMID: 28422478     DOI: 10.1021/acs.analchem.7b00069

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  1 in total

1.  New insights towards strikingly improved room temperature ethanol sensing properties of p-type Ce-doped SnO2 sensors.

Authors:  Manjeet Kumar; Vishwa Bhatt; A C Abhyankar; Joondong Kim; Akshay Kumar; Sagar H Patil; Ju-Hyung Yun
Journal:  Sci Rep       Date:  2018-05-24       Impact factor: 4.379

  1 in total

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