Literature DB >> 24699779

Silicone hydrogel contact lenses surface promote Acanthamoeba castellanii trophozoites adherence: qualitative and quantitative analysis.

Maritza A Omaña-Molina1, Arturo González-Robles, Lizbeth Salazar-Villatoro, Alexander Bernal-Escobar, Angel Durán-Díaz, Adolfo René Méndez-Cruz, Adolfo Martínez-Palomo.   

Abstract

PURPOSE: To describe the adhesion properties of Acanthamoeba castellanii trophozoites to silicone hydrogel contact lenses of first generation (lotrafilcon A), second generation (galyfilcon A), and third generation (comfilcon A) and correlate the results with their specific surface characteristics, time of interaction, and suspension media.
METHODS: Qualitative and quantitative assessments of the adhesion of 200 trophozoites of A. castellanii on contact lenses in culture medium (Bacto Casitone) and isotonic saline (IS) at different time points (15 minutes and 6 hours) were determined.
RESULTS: By scanning electron microscopy, A. castellanii trophozoites were observed firmly adhered to the surface of hydrogel lenses after 15 minutes of interaction. The surface of lotrafilcon A lenses on which amoebae adhere better (16.4±10.2 amoebae/lens section) is rough and folded, which increases the contact surface with trophozoites, allowing acanthopodia to attach firmly. Contrarily, galyfilcon A lenses have a smoother surface, and lower numbers of amoebae were observed adhered to these lenses (4.7±2.9 amoebae/lens section). Even fewer amoebae adhered to the smoother surface of the comfilcon A lens (2.2±1.7 amoebae/lens section). Trophozoites showed similar behavior in both Bacto Casitone medium and IS.
CONCLUSION: A rough surface may contribute to better adhesion of amoebae to silicone hydrogel lenses. Although a reduced numbers of trophozoites adhered to smooth lenses, trophozoites are a risk factor for amoebic keratitis. Isotonic saline facilitated trophozoite survival, suggesting that homemade saline solutions may contribute to the persistence of trophozoites, especially when there is no proper hygiene regimen used with the contact lens cases.

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Year:  2014        PMID: 24699779     DOI: 10.1097/ICL.0000000000000024

Source DB:  PubMed          Journal:  Eye Contact Lens        ISSN: 1542-2321            Impact factor:   2.018


  5 in total

1.  Water Exposure is a Common Risk Behavior Among Soft and Gas-Permeable Contact Lens Wearers.

Authors:  Aaron B Zimmerman; Kathryn Richdale; Gladys Lynn Mitchell; Beth T Kinoshita; Dawn Y Lam; Heidi Wagner; Luigina Sorbara; Robin L Chalmers; Sarah A Collier; Jennifer R Cope; Maya M Rao; Michael J Beach; Jonathan S Yoder
Journal:  Cornea       Date:  2017-08       Impact factor: 2.651

2.  Acanthamoeba genotypes T3 and T4 as causative agents of amoebic keratitis in Mexico.

Authors:  Maritza Omaña-Molina; Virginia Vanzzini-Zago; Dolores Hernandez-Martinez; Arturo Gonzalez-Robles; Lizbeth Salazar-Villatoro; Elizabeth Ramirez-Flores; Eric Oregon-Miranda; Jacob Lorenzo-Morales; Adolfo Martinez-Palomo
Journal:  Parasitol Res       Date:  2015-11-19       Impact factor: 2.289

Review 3.  Contact lens associated microbial keratitis: practical considerations for the optometrist.

Authors:  Aaron B Zimmerman; Alex D Nixon; Erin M Rueff
Journal:  Clin Optom (Auckl)       Date:  2016-01-29

4.  Silver Nanoparticles as a Novel Potential Preventive Agent against Acanthamoeba Keratitis.

Authors:  Edyta B Hendiger; Marcin Padzik; Ines Sifaoui; María Reyes-Batlle; Atteneri López-Arencibia; Aitor Rizo-Liendo; Carlos J Bethencourt-Estrella; Desirée San Nicolás-Hernández; Olfa Chiboub; Rubén L Rodríguez-Expósito; Marta Grodzik; Anna Pietruczuk-Padzik; Karolina Stępień; Gabriela Olędzka; Lidia Chomicz; José E Piñero; Jacob Lorenzo-Morales
Journal:  Pathogens       Date:  2020-05-05

5.  Silver Nanoparticles Conjugated with Contact Lens Solutions May Reduce the Risk of Acanthamoeba Keratitis.

Authors:  Edyta B Hendiger; Marcin Padzik; Inés Sifaoui; María Reyes-Batlle; Atteneri López-Arencibia; Diana Zyskowska; Marta Grodzik; Anna Pietruczuk-Padzik; Jacek Hendiger; Gabriela Olędzka; Lidia Chomicz; José E Piñero; Jacob Lorenzo-Morales
Journal:  Pathogens       Date:  2021-05-11
  5 in total

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