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Antimicrobial second skin using copper nanomesh.


ABSTRACT: The functional support and advancement of our body while preserving inherent naturalness is one of the ultimate goals of bioengineering. Skin protection against infectious pathogens is an application that requires common and long-term wear without discomfort or distortion of the skin functions. However, no antimicrobial method has been introduced to prevent cross-infection while preserving intrinsic skin conditions. Here, we propose an antimicrobial skin protection platform copper nanomesh, which prevents cross-infectionmorphology, temperature change rate, and skin humidity. Copper nanomesh exhibited an inactivation rate of 99.99% for Escherichia coli bacteria and influenza virus A within 1 and 10 min, respectively. The thin and porous nanomesh allows for conformal coating on the fingertips, without significant interference with the rate of skin temperature change and humidity. Efficient cross-infection prevention and thermal transfer of copper nanomesh were demonstrated using direct on-hand experiments.

SUBMITTER: Kim JJ 

PROVIDER: S-EPMC9214522 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Antimicrobial second skin using copper nanomesh.

Kim Jae Joon JJ   Ha Siyoung S   Kim Lina L   Kato Yutaro Y   Wang Yan Y   Okutani Chihiro C   Wang Haoyang H   Wang Chunya C   Fukuda Kenjiro K   Lee Sunghoon S   Yokota Tomoyuki T   Kwon Oh Seok OS   Someya Takao T  

Proceedings of the National Academy of Sciences of the United States of America 20220609 24


The functional support and advancement of our body while preserving inherent naturalness is one of the ultimate goals of bioengineering. Skin protection against infectious pathogens is an application that requires common and long-term wear without discomfort or distortion of the skin functions. However, no antimicrobial method has been introduced to prevent cross-infection while preserving intrinsic skin conditions. Here, we propose an antimicrobial skin protection platform copper nanomesh, whic  ...[more]

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