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Improved antibacterial performance using hydrogel-immobilized lysozyme as a catalyst in water.


ABSTRACT: Silver nanoparticle-based catalysts are used extensively to kill bacteria in drinking water treatment. However secondary contamination and their high cost require scientists to seek alternatives with non-toxicity, high activity and low cost. In this article, we develop a new hydrogel-immobilized lysozyme (h-lysozyme) that shows excellent antibacterial performance, including high activity duration of up to 55 days, inhibition efficiency as high as 99.4%, good recycling capability of up to 11 cycles, a wide temperature window and extremely low concentration. The immobilized lysozyme displayed greatly improved bacterial inhibition with both Gram-negative E. coli and Gram-positive B. subtilis, which enables broad antibacterial applications in various water systems. In parallel, the non-toxic structure and high stability of the h-lysozyme without additional contamination make it a promising alternative to nanoparticle catalysts fur use in drinking water purification.

SUBMITTER: Ye Y 

PROVIDER: S-EPMC9065539 | biostudies-literature | 2019 Jun

REPOSITORIES: biostudies-literature

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Improved antibacterial performance using hydrogel-immobilized lysozyme as a catalyst in water.

Ye Yuemei Y   Klimchuk Stanislav S   Shang Mingwei M   Niu Junjie J  

RSC advances 20190628 35


Silver nanoparticle-based catalysts are used extensively to kill bacteria in drinking water treatment. However secondary contamination and their high cost require scientists to seek alternatives with non-toxicity, high activity and low cost. In this article, we develop a new hydrogel-immobilized lysozyme (h-lysozyme) that shows excellent antibacterial performance, including high activity duration of up to 55 days, inhibition efficiency as high as 99.4%, good recycling capability of up to 11 cycl  ...[more]

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