Literature DB >> 28265620

Glycine-functionalized copper(ii) hydroxide nanoparticles with high intrinsic superoxide dismutase activity.

Karsten Korschelt1, Ruben Ragg1, Carmen S Metzger2, Martin Kluenker1, Michael Oster1, Bastian Barton1, Martin Panthöfer1, Dennis Strand3, Ute Kolb1, Mihail Mondeshki1, Susanne Strand3, Jürgen Brieger2, M Nawaz Tahir1, Wolfgang Tremel1.   

Abstract

Superoxide dismutases (SOD) are a group of enzymes that catalyze the dismutation of superoxide (O2-) radicals into molecular oxygen (O2) and H2O2 as a first line of defense against oxidative stress. Here, we show that glycine-functionalized copper(ii) hydroxide nanoparticles (Gly-Cu(OH)2 NPs) are functional SOD mimics, whereas bulk Cu(OH)2 is insoluble in water and catalytically inactive. In contrast, Gly-Cu(OH)2 NPs form water-dispersible mesocrystals with a SOD-like activity that is larger than that of their natural CuZn enzyme counterpart. Based on this finding, we devised an application where Gly-Cu(OH)2 NPs were incorporated into cigarette filters. Cigarette smoke contains high concentrations of toxic reactive oxygen species (ROS, >1016 molecules per puff) including superoxide and reactive nitrogen species which lead to the development of chronic and degenerative diseases via oxidative damage and subsequent cell death. Embedded in cigarette filters Gly-Cu(OH)2 NPs efficiently removed ROS from smoke, thereby protecting lung cancer cell lines from cytotoxic effects. Their stability, ease of production and versatility make them a powerful tool for a wide range of applications in environmental chemistry, biotechnology and medicine.

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Year:  2017        PMID: 28265620     DOI: 10.1039/c6nr09810j

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  9 in total

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Review 2.  Rational Design and Biological Application of Antioxidant Nanozymes.

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5.  Development of glycine-copper(ii) hydroxide nanoparticles with improved biosafety for sustainable plant disease management.

Authors:  Hongqiang Dong; Renci Xiong; You Liang; Gang Tang; Jiale Yang; Jingyue Tang; Junfan Niu; Yunhao Gao; Zhiyuan Zhou; Yongsong Cao
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7.  Temperature-responsive iron nanozymes based on poly(N-vinylcaprolactam) with multi-enzyme activity.

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Review 8.  Nanozymes: Versatile Platforms for Cancer Diagnosis and Therapy.

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Review 9.  Iron Oxide Nanozyme: A Multifunctional Enzyme Mimetic for Biomedical Applications.

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Journal:  Theranostics       Date:  2017-07-22       Impact factor: 11.556

  9 in total

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