Literature DB >> 27934089

Facet Energy versus Enzyme-like Activities: The Unexpected Protection of Palladium Nanocrystals against Oxidative Damage.

Cuicui Ge1,2, Ge Fang1, Xiaomei Shen3, Yu Chong1,2, Wayne G Wamer2, Xingfa Gao3, Zhifang Chai1, Chunying Chen4, Jun-Jie Yin2.   

Abstract

To develop nanomaterials as artificial enzymes, it is necessary to better understand how their physicochemical properties affect their enzyme-like activities. Although prior research has demonstrated that nanomaterials exhibit tunable enzyme-like activities depending on their size, structure, and composition, few studies have examined the effect of surface facets, which determine surface energy or surface reactivity. Here, we use electron spin-resonance spectroscopy to report that lower surface energy {111}-faceted Pd octahedrons have greater intrinsic antioxidant enzyme-like activity than higher surface energy {100}-faceted Pd nanocubes. Our in vitro experiments found that those same Pd octahedrons are more effective than Pd nanocubes at scavenging reactive oxygen species (ROS). Those reductions in ROS preserve the homogeneity of mitochondrial membrane potential and attenuate damage to important biomolecules, thereby allowing a substantially higher number of cells to survive oxidative challenges. Our computations of molecular mechanisms for the antioxidant activities of {111}- and {100}-faceted Pd nanocrystals, as well as their activity order, agree well with experimental observations. These findings can guide the design of antioxidant-mimicking nanomaterials, which could have therapeutic or preventative potential against oxidative stress related diseases.

Entities:  

Keywords:  antioxidants; computational chemistry; enzyme-like activity; oxidative stress; palladium nanocrystals; surface facet

Mesh:

Substances:

Year:  2016        PMID: 27934089     DOI: 10.1021/acsnano.6b06297

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  25 in total

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4.  Synthesis of Gold-Platinum Core-Shell Nanoparticles Assembled on a Silica Template and Their Peroxidase Nanozyme Properties.

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5.  TEM Studies on Antibacterial Mechanisms of Black Phosphorous Nanosheets.

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6.  Boosting the Peroxidase-Like Activity of Nanostructured Nickel by Inducing Its 3+ Oxidation State in LaNiO3 Perovskite and Its Application for Biomedical Assays.

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Review 9.  A Review on Metal- and Metal Oxide-Based Nanozymes: Properties, Mechanisms, and Applications.

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Journal:  Nanomicro Lett       Date:  2021-07-09

10.  Palladium concave nanocrystals with high-index facets accelerate ascorbate oxidation in cancer treatment.

Authors:  Yu Chong; Xing Dai; Ge Fang; Renfei Wu; Lin Zhao; Xiaochuan Ma; Xin Tian; Sangyun Lee; Chao Zhang; Chunying Chen; Zhifang Chai; Cuicui Ge; Ruhong Zhou
Journal:  Nat Commun       Date:  2018-11-19       Impact factor: 14.919

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