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隐形眼镜上的生物膜建模以及多功能隐形眼镜护理液与抗生素的体外活性比较。

Biofilm modelling on the contact lenses and comparison of the in vitro activities of multipurpose lens solutions and antibiotics.

作者信息

Dosler Sibel, Hacioglu Mayram, Yilmaz Fatima Nur, Oyardi Ozlem

机构信息

Department of Pharmaceutical Microbiology, Istanbul University, Faculty of Pharmacy, Istanbul, Turkey.

出版信息

PeerJ. 2020 Jun 24;8:e9419. doi: 10.7717/peerj.9419. eCollection 2020.

Abstract

During the contact lens (CL) usage, microbial adhesion and biofilm formation are crucial threats for eye health due to the development of mature biofilms on CL surfaces associated with serious eye infections such as keratitis. For CL related eye infections, multi drug resistant or (especially MRSA) and are the most common infectious bacteria and yeast, respectively. In this study, CL biofilm models were created by comparing them to reveal the differences on specific conditions. Then the anti-biofilm activities of some commercially available multipurpose CL solutions (MPSs) and antibiotic eye drops against mature biofilms of , , and standard and clinical strains were determined by the time killing curve (TKC) method at 6, 24 and 48 h. According to the biofilm formation models, the optimal biofilms occurred in a mixture of bovine serum albumin (20% v/v) and lysozyme (2 g/L) diluted in PBS at 37 °C for 24 h, without shaking. When we compared the CL types under the same conditions, the strongest biofilms according to their cell density, were formed on Pure Vision ≥ Softens 38 > Acuve 2 ∼ Softens Toric CLs. When we compared the used CLs with the new ones, a significant increase at the density of biofilms on the used CLs was observed. The most active MPS against and biofilms at 24 h was Opti-Free followed by Bio-True and Renu according to the TKC analyses. In addition, the most active MPS against was Renu followed by Opti-Free and Bio-True at 48 h. None of the MPSs showed 3 Log bactericidal/fungicidal activity, except for Opti-Free against and biofilms during 6 h contact time. Moreover, all studied antibiotic eye drops were active against and biofilms on CLs at 6 h and 24 h either directly or as 1/10 concentration, respectively. According to the results of the study, anti-biofilm activities of MPSs have changed depending on the chemical ingredients and contact times of MPSs, the type of infectious agent, and especially the CL type and usage time.

摘要

在隐形眼镜(CL)使用过程中,微生物粘附和生物膜形成对眼睛健康构成重大威胁,因为CL表面成熟生物膜的形成与严重眼部感染(如角膜炎)相关。对于与CL相关的眼部感染,耐多药菌或(尤其是耐甲氧西林金黄色葡萄球菌)和分别是最常见的感染细菌和酵母菌。在本研究中,通过比较创建CL生物膜模型以揭示特定条件下的差异。然后,采用时间杀菌曲线(TKC)法在6、24和48小时测定了一些市售多功能CL护理液(MPS)和抗生素眼药水对标准菌株和临床菌株的成熟生物膜的抗生物膜活性。根据生物膜形成模型,最佳生物膜在37℃下于PBS中稀释的牛血清白蛋白(20% v/v)和溶菌酶(2 g/L)的混合物中培养24小时形成,无需振荡。在相同条件下比较CL类型时,根据细胞密度,在Pure Vision≥Softens 38>Acuve 2∼Softens Toric CLs上形成的生物膜最强。当我们将用过的CL与新的CL进行比较时,观察到用过的CL上生物膜密度显著增加。根据TKC分析,在24小时时对和生物膜最具活性的MPS是Opti-Free,其次是Bio-True和Renu。此外,在48小时时对最具活性的MPS是Renu,其次是Opti-Free和Bio-True。除Opti-Free在6小时接触时间内对和生物膜具有3 Log杀菌/杀真菌活性外,没有一种MPS显示出该活性。此外,所有研究的抗生素眼药水在6小时和24小时时分别直接或以1/10浓度对CL上的和生物膜具有活性。根据研究结果,MPS的抗生物膜活性因MPS的化学成分和接触时间、感染病原体类型,尤其是CL类型和使用时间而有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e60/7320721/5e01430b4c66/peerj-08-9419-g001.jpg

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