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Bactericidal effects and accelerated wound healing using Tb4O7 nanoparticles with intrinsic oxidase-like activity.


ABSTRACT:

Background

Nanomaterials that exhibit intrinsic enzyme-like characteristics have shown great promise as potential antibacterial agents. However, many of them exhibit inefficient antibacterial activity and biosafety problems that limit their usefulness. The development of new nanomaterials with good biocompatibility and rapid bactericidal effects is therefore highly desirable. Here, we show a new type of terbium oxide nanoparticles (Tb4O7 NPs) with intrinsic oxidase-like activity for in vitro and in vivo antibacterial application.

Results

We find that Tb4O7 NPs can quickly oxidize a series of organic substrates in the absence of hydrogen peroxide. The oxidase-like capacity of Tb4O7 NPs allows these NPs to consume antioxidant biomolecules and generate reactive oxygen species to disable bacteria in vitro. Moreover, the in vivo experiments showed that Tb4O7 NPs are efficacious in wound-healing and are protective of normal tissues.

Conclusions

Our results reveal that Tb4O7 NPs have intrinsic oxidase-like activity and show effective antibacterial ability both in vitro and in vivo. These findings demonstrate that Tb4O7 NPs are effective antibacterial agents and may have a potential application in wound healing.

SUBMITTER: Li C 

PROVIDER: S-EPMC6466657 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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Publications

Bactericidal effects and accelerated wound healing using Tb<sub>4</sub>O<sub>7</sub> nanoparticles with intrinsic oxidase-like activity.

Li Chen C   Sun Yurong Y   Li Xiaoping X   Fan Sanhong S   Liu Yimin Y   Jiang Xiumei X   Boudreau Mary D MD   Pan Yue Y   Tian Xin X   Yin Jun-Jie JJ  

Journal of nanobiotechnology 20190416 1


<h4>Background</h4>Nanomaterials that exhibit intrinsic enzyme-like characteristics have shown great promise as potential antibacterial agents. However, many of them exhibit inefficient antibacterial activity and biosafety problems that limit their usefulness. The development of new nanomaterials with good biocompatibility and rapid bactericidal effects is therefore highly desirable. Here, we show a new type of terbium oxide nanoparticles (Tb<sub>4</sub>O<sub>7</sub> NPs) with intrinsic oxidase-  ...[more]

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