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精油涂层硅橡胶上的生物膜形成测定

Biofilm Formation Assay on Essential Oil Coated Silicone Rubber.

作者信息

Sahal Gulcan, Woerdenbag Herman J, Hinrichs Wouter L J, Visser Anita, van der Mei Henny C, Bilkay Isil Seyis

机构信息

Hacettepe University, Faculty of Sciences, Department of Biology (Biotechnology Division), Beytepe, Ankara, Turkey.

University of Groningen, Department of Pharmaceutical Technology and Biopharmacy, Antonius Deusinglaan 1, Groningen, the Netherlands.

出版信息

Bio Protoc. 2021 Mar 5;11(5):e3941. doi: 10.21769/BioProtoc.3941.

Abstract

Development of biofilm associated candidemia for patients with implanted biomaterials causes an urgency to develop antimicrobial and biofilm inhibitive coatings in the management of recalcitrant infections. Recently, there is an increase in the number of patients with biofilm formation and resistance to antifungal therapy. Therefore, there is a growing interest to use essential oils as coating agents in order to prevent biomaterial-associated infections. Often high costs, complicated and laborious technologies are used for both applying the coating and determination of the antibiofilm effects hampering a rapid screening of essential oils. In order to determine biofilm formation of on essential oil coated surfaces easier, cheaper and faster, we developed an essential oil (lemongrass oil) coated surface (silicone-rubber) by using a hypromellose ointment/essential oil mixture. Furthermore, we modified the "crystal violet binding assay" to quantify the biofilm mass of biofilm formed on the lemongrass oil coated silicone rubber surface. The essential oil coating and the biomass determination of biofilms on silicone rubber can be easily applied with simple and accessible equipment, and will therefore provide rapid information about whether or not a particular essential oil is antiseptic, also when it is used as a coating agent.

摘要

植入生物材料的患者发生生物膜相关念珠菌血症,这促使人们迫切需要开发抗菌和生物膜抑制涂层来治疗顽固性感染。最近,生物膜形成且对抗真菌治疗产生耐药性的患者数量有所增加。因此,人们越来越有兴趣使用精油作为涂层剂来预防生物材料相关感染。通常,应用涂层和测定抗生物膜效果都采用高成本、复杂且费力的技术,这阻碍了对精油的快速筛选。为了更轻松、更便宜且更快地测定精油涂层表面的生物膜形成情况,我们通过使用羟丙甲纤维素软膏/精油混合物开发了一种精油(柠檬草油)涂层表面(硅橡胶)。此外,我们改进了“结晶紫结合试验”,以量化在柠檬草油涂层硅橡胶表面形成的生物膜的生物膜量。精油涂层以及硅橡胶上生物膜的生物量测定可以使用简单且易于获得的设备轻松进行,因此,即使特定精油用作涂层剂时,也能快速提供有关其是否具有抗菌性的信息。

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