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单宁酸修饰的银纳米颗粒与隐形眼镜护理液联合使用有助于防止 spp. 粘附于隐形眼镜。

Tannic Acid-Modified Silver Nanoparticles in Conjunction with Contact Lens Solutions Are Useful for Progress against the Adhesion of spp. to Contact Lenses.

作者信息

Padzik Marcin, Chomicz Lidia, Bluszcz Julita, Maleszewska Karolina, Grobelny Jaroslaw, Conn David Bruce, Hendiger Edyta B

机构信息

Parasitology Laboratory, Department of Medical Biology, Medical University of Warsaw, Litewska 14/16, 00-575 Warsaw, Poland.

Department of Materials Technology and Chemistry, Faculty of Chemistry, University of Lodz, 163 Pomorska Street, 90-236 Lodz, Poland.

出版信息

Microorganisms. 2022 May 24;10(6):1076. doi: 10.3390/microorganisms10061076.

Abstract

spp. are amphizoic amoebae that are widely distributed in the environment and capable of entering the human body. They can cause pathogenic effects in different tissues and organs, including keratitis (AK), which may result in a loss of visual acuity and blindness. The diagnostics, treatment, and prevention of AK are still challenging. More than 90% of AK cases are related to the irresponsible wearing of contact lenses. However, even proper lens care does not sufficiently protect against this eye disease, as amoebae have been also found in contact lens solutions and contact lens storage containers. The adhesion of the amoebae to the contact lens surface is the first step in developing this eye infection. To limit the incidence of AK, it is important to enhance the anti-adhesive activity of the most popular contact lens solutions. Currently, silver nanoparticles (AgNPs) are used as modern antimicrobial agents. Their effectiveness against spp., especially with the addition of plant metabolites, such as tannic acid, has been confirmed. Here, we present the results of our further studies on the anti-adhesion potential of tannic acid-modified silver nanoparticles (AgTANPs) in combination with selected contact lens solutions against spp. on four groups of contact lenses. The obtained results showed an increased anti-adhesion activity of contact lens solutions in conjunction with AgTANPs with a limited cytotoxicity effect compared to contact lens solutions acting alone. This may provide a benefit in improving the prevention of amoebae eye infections. However, there is still a need for further studies on different pathogenic strains of in order to assess the adhesion of the cysts to the contact lens surface and to reveal a more comprehensive picture of the activity of AgTANPs and contact lens solutions.

摘要

某些种类是兼性变形虫,广泛分布于环境中,能够进入人体。它们可在不同组织和器官中引起致病作用,包括角膜炎(AK),这可能导致视力丧失和失明。AK的诊断、治疗和预防仍然具有挑战性。超过90%的AK病例与不负责任地佩戴隐形眼镜有关。然而,即使正确护理镜片也不足以预防这种眼部疾病,因为在隐形眼镜护理液和隐形眼镜储存容器中也发现了变形虫。变形虫粘附在隐形眼镜表面是引发这种眼部感染的第一步。为了限制AK的发病率,提高最常用隐形眼镜护理液的抗粘附活性很重要。目前,银纳米颗粒(AgNPs)被用作现代抗菌剂。它们对某些种类的有效性,特别是添加植物代谢物如单宁酸后,已得到证实。在此,我们展示了我们进一步的研究结果,即单宁酸修饰的银纳米颗粒(AgTANPs)与选定的隐形眼镜护理液联合使用对四组隐形眼镜上某些种类的抗粘附潜力。所得结果表明,与单独使用的隐形眼镜护理液相比,隐形眼镜护理液与AgTANPs联合使用时抗粘附活性增加,且细胞毒性作用有限。这可能有助于改善对变形虫眼部感染的预防。然而,仍需要对不同致病菌株进行进一步研究,以评估囊肿对隐形眼镜表面的粘附情况,并更全面地揭示AgTANPs和隐形眼镜护理液的活性情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b170/9230222/1b7bef27fdda/microorganisms-10-01076-g001.jpg

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