Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections

Garlic has a mild antibacterial activity due to its organosulfur content. Here, the authors develop an approach to convert natural organosulfur into iron-sulfur nanosheets, with significantly higher antibacterial activity that can be used against infections as well as biofilms.

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Autores principales: Zhuobin Xu, Zhiyue Qiu, Qi Liu, Yixin Huang, Dandan Li, Xinggui Shen, Kelong Fan, Juqun Xi, Yunhao Gu, Yan Tang, Jing Jiang, Jialei Xu, Jinzhi He, Xingfa Gao, Yuan Liu, Hyun Koo, Xiyun Yan, Lizeng Gao
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/64297ca0a98c49a78b143d0f85bcbbbe
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spelling oai:doaj.org-article:64297ca0a98c49a78b143d0f85bcbbbe2021-12-02T16:49:56ZConverting organosulfur compounds to inorganic polysulfides against resistant bacterial infections10.1038/s41467-018-06164-72041-1723https://doaj.org/article/64297ca0a98c49a78b143d0f85bcbbbe2018-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06164-7https://doaj.org/toc/2041-1723Garlic has a mild antibacterial activity due to its organosulfur content. Here, the authors develop an approach to convert natural organosulfur into iron-sulfur nanosheets, with significantly higher antibacterial activity that can be used against infections as well as biofilms.Zhuobin XuZhiyue QiuQi LiuYixin HuangDandan LiXinggui ShenKelong FanJuqun XiYunhao GuYan TangJing JiangJialei XuJinzhi HeXingfa GaoYuan LiuHyun KooXiyun YanLizeng GaoNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhuobin Xu
Zhiyue Qiu
Qi Liu
Yixin Huang
Dandan Li
Xinggui Shen
Kelong Fan
Juqun Xi
Yunhao Gu
Yan Tang
Jing Jiang
Jialei Xu
Jinzhi He
Xingfa Gao
Yuan Liu
Hyun Koo
Xiyun Yan
Lizeng Gao
Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections
description Garlic has a mild antibacterial activity due to its organosulfur content. Here, the authors develop an approach to convert natural organosulfur into iron-sulfur nanosheets, with significantly higher antibacterial activity that can be used against infections as well as biofilms.
format article
author Zhuobin Xu
Zhiyue Qiu
Qi Liu
Yixin Huang
Dandan Li
Xinggui Shen
Kelong Fan
Juqun Xi
Yunhao Gu
Yan Tang
Jing Jiang
Jialei Xu
Jinzhi He
Xingfa Gao
Yuan Liu
Hyun Koo
Xiyun Yan
Lizeng Gao
author_facet Zhuobin Xu
Zhiyue Qiu
Qi Liu
Yixin Huang
Dandan Li
Xinggui Shen
Kelong Fan
Juqun Xi
Yunhao Gu
Yan Tang
Jing Jiang
Jialei Xu
Jinzhi He
Xingfa Gao
Yuan Liu
Hyun Koo
Xiyun Yan
Lizeng Gao
author_sort Zhuobin Xu
title Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections
title_short Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections
title_full Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections
title_fullStr Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections
title_full_unstemmed Converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections
title_sort converting organosulfur compounds to inorganic polysulfides against resistant bacterial infections
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/64297ca0a98c49a78b143d0f85bcbbbe
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