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The clinical and cellular basis of contact lens-related corneal infections

机译:隐形眼镜相关角膜感染的临床和细胞基础

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Abstract: Microbial keratitis (MK) is the most visually devastating complication associated with contact lens wear. Pseudomonas aeruginosa (PA) is highly invasive in the corneal epithelium and is responsible for more than half of the reported cases of contact lens-related MK. To protect against Pseudomonas-mediated MK, the corneal epithelium has evolved overlapping defense mechanisms that function to protect the ocular surface from microbial invasion. Research has shown that contact lens wear disrupts these protective mechanisms through breakdown of normal homeostatic surface renewal as well as damaging the corneal surface, exposing underlying cell membrane receptors that bind and internalize PA through the formation of lipid rafts. Human clinical trials have shown that initial adherence of PA with resulting increased risk for microbial infection is mediated in part by contact lens oxygen transmissibility. Recently, chemical preserved multipurpose solutions (MPS) have been implicated in increasing PA adherence to corneal epithelial cells, in addition to inducing significant levels of toxic staining when used in conjunction with specific silicone hydrogel lenses. This review summarizes what is currently known about the relationship between contact lenses, the corneal epithelium, MPS, and infection.
机译:摘要:微生物角膜炎(MK)是与隐形眼镜佩戴有关的最视觉破坏性并发症。铜绿假单胞菌(PA)在角膜上皮中具有高度侵袭性,在所报道的与隐形眼镜相关的MK病例中占一半以上。为了防止假单胞菌介导的MK,角膜上皮细胞已经形成了重叠的防御机制,其功能是保护眼表免受微生物侵袭。研究表明,隐形眼镜的佩戴会破坏正常的稳态表面更新并破坏角膜表面,从而破坏这些保护机制,从而暴露通过脂质筏形成结合并内化PA的潜在细胞膜受体。人体临床试验表明,PA最初的依从性以及由此引起的微生物感染风险的增加部分是由隐形眼镜的氧气透过率介导的。最近,化学保存的多用途溶液(MPS)与增加与特定的有机硅水凝胶镜片结合使用时引起显着水平的毒性染色外,还与PA对角膜上皮细胞的粘附有关。这篇综述总结了关于隐形眼镜,角膜上皮,MPS和感染之间的关系的最新知识。

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