| Literature DB >> 27686604 |
Min-Qiang Wang1, Cui Ye2, Shu-Juan Bao1, Mao-Wen Xu1, Yan Zhang1, Ling Wang1, Xiao-Qing Ma1, Jun Guo3, Chang-Ming Li1.
Abstract
Monitoring superoxide anion radicals in living cells has been attracting much academic and industrial interest due to the dual roles of the radicals. Herein, we synthesized a novel nanostructured cobalt phosphate nanorods (Co3(PO4)2 NRs) with tunable pore structure using a simple and effective micro-emulsion method and explored their potential utilization in the electrochemical sensing of superoxide anions. As an analytical and sensing platform, the nanoscale biomimetic enzymes Co3(PO4)2 NRs exhibited excellent selectivity and sensitivity towards superoxide anion (O2•-) with a low detection limit (2.25nM), wide linear range (5.76-5396nM), and long-term stability. Further, the nanoscale biomimetic enzyme could be efficiently applied in situ to electrochemically detect O2•- released from human malignant melanoma cells and normal keratinocyte, showing excellent real time quantitative detection capability. This material open up exciting opportunities for implementing biomimetic enzymes in nanoscale transition metal phosphates and designing enzyme-free biosensors with much higher sensitivity and durability in health and disease analysis than those of natural one. Copyright ÂEntities:
Keywords: Biomimetic enzymes; Biosensor; Cobalt phosphate; Superoxide anion radical
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Year: 2016 PMID: 27686604 DOI: 10.1016/j.bios.2016.09.066
Source DB: PubMed Journal: Biosens Bioelectron ISSN: 0956-5663 Impact factor: 10.618