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通过共价连接的苯硫酮可减少植入材料上的表皮葡萄球菌生物膜。

Staphylococcus epidermidis biofilm on implant material is reduced by a covalently linked thiophenone.

作者信息

Aamdal Scheie Anne, Chamgordani Elahe Jafari, Naemi Ali-Oddin, Hansen Finn Knut, Benneche Tore

机构信息

Department of Oral Biology, Faculty of Dentistry, University of Oslo, Oslo, Norway.

Department of Chemistry, Faculty of Mathematics and Natural Sciences, University of Oslo, Oslo, Norway.

出版信息

J Appl Microbiol. 2016 Aug;121(2):547-53. doi: 10.1111/jam.13188.

Abstract

AIMS

The present aims were firstly to coat metal implant material with a quorum sensing inhibitory thiophenone molecule, and secondly to assess the inhibitory effect on Staphylococcus epidermidis biofilm accumulation on thiophenone-coated coupons.

METHOD AND RESULTS

Thiophenone- and control-coated metal coupons were prepared by silane hydrolysis and dip coating. The linking of thiophenone to the surface was confirmed by X-ray photoelectron spectroscopy analyses. Biofilm by Staph. epidermidis, a frequent cause of implant-associated infections, was allowed to form under flowing conditions for 48 h. The biofilm accumulations were significantly reduced on the thiophenone-coated coupons. This was confirmed by confocal scanning microscopy.

CONCLUSION

This study showed for the first time how a synthetic thiophenone may be covalently linked to a stainless steel surface, and that biofilm accumulations on such surfaces are significantly reduced.

SIGNIFICANCE AND IMPACT OF THE STUDY

Functionalizing surfaces by covalent linking of thiophenones might open a wide array of applications. Thiophenone coating of medical implants represents a novel and promising approach to prevent implant-associated infections.

摘要

目的

目前的目的一是用一种群体感应抑制性苯硫酮分子包覆金属植入材料,二是评估其对表皮葡萄球菌在苯硫酮包覆试样上生物膜积聚的抑制作用。

方法与结果

通过硅烷水解和浸涂制备苯硫酮包覆和对照包覆的金属试样。通过X射线光电子能谱分析证实了苯硫酮与表面的连接。表皮葡萄球菌是植入相关感染的常见病因,其生物膜在流动条件下形成48小时。在苯硫酮包覆的试样上,生物膜积聚显著减少。共聚焦扫描显微镜证实了这一点。

结论

本研究首次展示了合成苯硫酮如何与不锈钢表面共价连接,以及此类表面上的生物膜积聚显著减少。

研究的意义和影响

通过苯硫酮的共价连接使表面功能化可能会开启广泛的应用。医用植入物的苯硫酮涂层是预防植入相关感染的一种新颖且有前景的方法。

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