Tannic acid-modified silver nanoparticles as a novel therapeutic agent against Acanthamoeba

被引:0
|
作者
Marcin Padzik
Edyta B. Hendiger
Lidia Chomicz
Marta Grodzik
Maciej Szmidt
Jarosław Grobelny
Jacob Lorenzo-Morales
机构
[1] Medical University of Warsaw,Department of Medical Biology
[2] Warsaw University of Life Science,Division of Nanobiotechnology, Faculty of Animal Sciences
[3] Warsaw University of Life Science,Department of Morphological Sciences
[4] University of Lodz,Department of Materials Technology and Chemistry, Faculty of Chemistry
[5] University of La Laguna,University Institute of Tropical Diseases and Public Health of the Canary Islands
来源
Parasitology Research | 2018年 / 117卷
关键词
Keratitis; Nanoparticles; Tannic acid;
D O I
暂无
中图分类号
学科分类号
摘要
Free-living amoebae belonging to Acanthamoeba genus are widely distributed protozoans which are able to cause infection in humans and other animals such as keratitis and encephalitis. Acanthamoeba keratitis is a vision-threatening corneal infection with currently no available fully effective treatment. Moreover, the available therapeutic options are insufficient and are very toxic to the eye. Therefore, there is an urgent need for the development of more effective anti-amoebic agents. Nanotechnology approaches have been recently reported to be useful for the elucidation antimicrobial, antiviral, antifungal and antiprotozoal activities and thus, they could be a good approach for the development of anti-Acanthamoeba agents. Therefore, this study was aimed to explore the activity and cytotoxicity of tannic acid-modified silver nanoparticles, pure silver nanoparticles and pure gold nanoparticles against clinical strains of Acanthamoeba spp. The obtained results showed a significant anti-amoebic effect of the tannic acid-modified silver nanoparticles which also presented low cytotoxicity. Moreover, tannic acid-modified silver nanoparticles were well absorbed by the trophozoites and did not induce encystation. On the other hand, pure silver nanoparticles were only slightly active against the trophozoite stage and pure gold nanoparticles did not show any activity. In conclusion and based on the observed results, silver nanoparticle conjugation with tannic acid may be considered as potential agent against Acanthamoeba spp.
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页码:3519 / 3525
页数:6
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