Organoselenium Polymer Inhibits Biofilm Formation in Polypropylene Contact Lens Case Material

P. Tran, E. Huynh, P. Pham, Blake Lacky, C. Jarvis, T. Mosley, A. Hamood, R. Hanes, T. Reid
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引用次数: 16

Abstract

Objectives: Contact lens-acquired bacterial infections are a serious problem. Of the reported cases, inadequate cleaning of the lens case was the most common cause of lens contamination. Organoselenium has been shown to inhibit bacterial attachment to different polymer materials. This study evaluates the ability of an organoselenium monomer, incorporated into the polymer of a polypropylene contact lens case coupon, to block the formation of biofilms in a lens case. Methods: The bacteria tested were Pseudomonas aeruginosa, Staphylococcus aureus, Stenotrophomonas maltophilia, and Serratia marcescens. For this study, the bacteria were allowed to grow overnight, in trypticase soy broth media, in the presence of the selenium-containing polymer or the same polymer without organoselenium. The material was studied by both colony-forming unit determination and by confocal laser scanning microscopy. Results: The results showed that the organoselenium polymer versus the control polymer resulted in the following effect on biofilm formation: (1) a reduction in P. aeruginosa of 7.3 logs (100%); (2) a reduction in S. aureus of 7.3 logs (100%); (3) a reduction in S. maltophilia of 7.5 logs (100%); and (4) a reduction in S. marcescens reduction of 3.3 logs (99.9%). To test the stability of the organoselenium polypropylene contact lens coupon, the coupon was soaked in PBS for eight weeks at room temperature. It was found that when these soaked coupons were tested against S. aureus, complete inhibition (8.1 logs) was obtained. Because organoselenium cannot leach from the polymer, this would imply that the organoselenium polypropylene contact lens case coupon would be inhibitory toward bacterial biofilm for the life of the case. Conclusion: The organoselenium polypropylene contact lens case coupon shows the ability to inhibit biofilm formation. The use of organoselenium copolymer should play an important role in protecting against contact lens case-acquired infection.
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有机硒聚合物抑制聚丙烯隐形眼镜外壳材料中生物膜的形成
目的:隐形眼镜获得性细菌感染是一个严重的问题。在报告的病例中,镜片盒清洁不当是镜片污染的最常见原因。有机硒已被证明可以抑制细菌附着在不同的高分子材料上。本研究评估了有机硒单体的能力,纳入聚丙烯隐形眼镜盒片的聚合物,以阻止在隐形眼镜盒生物膜的形成。方法:检测细菌为铜绿假单胞菌、金黄色葡萄球菌、嗜麦芽窄养单胞菌和粘质沙雷菌。在这项研究中,细菌被允许在胰酶大豆肉汤培养基中生长,在含硒聚合物或不含有机硒的相同聚合物中生长。采用集落形成单位测定和激光共聚焦扫描显微镜对该材料进行了研究。结果:与对照聚合物相比,有机硒聚合物对生物膜形成的影响如下:(1)铜绿假单胞菌(P. aeruginosa)减少了7.3对数(100%);(2)金黄色葡萄球菌减少7.3 log (100%);(3)嗜麦芽葡萄球菌减少7.5 log (100%);(4)粘多糖减少3.3 log(99.9%)。为了测试有机硒聚丙烯隐形眼镜片片的稳定性,将片片片片在PBS中室温浸泡8周。结果表明,浸渍后的菌丝对金黄色葡萄球菌具有完全抑制作用(8.1 log)。由于有机硒不能从聚合物中浸出,这意味着有机硒聚丙烯隐形眼镜盒在其使用寿命内对细菌生物膜具有抑制作用。结论:有机硒聚丙烯隐形眼镜盒片具有抑制生物膜形成的作用。有机硒共聚物的使用在预防隐形眼镜病例获得性感染方面应发挥重要作用。
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