Highly transparent antibacterial hydrogel‐polymeric contact lenses doped with silver nanoparticles

Author:

Shaker Lina M.1ORCID,Al‐Azzawi Waleed Khalid2,Al‐Amiery Ahmed13,Takriff Mohd S.14,Wan Isahak Wan Nor Roslam1

Affiliation:

1. Department of Chemical and Process Engineering, Faculty of Engineering and Built Environment Universiti Kebangsaan Malaysia (UKM) Bangi Selangor Malaysia

2. Al‐Farahidi University Baghdad Iraq

3. Energy Department, Energy and Renewable Energies Technology Center University of Technology Baghdad Iraq

4. Chemical and Water Desalination Engineering Program, College of Engineering University of Sharjah Sharjah United Arab Emirates

Abstract

AbstractBiocompatible polymers such as poly(vinyl alcohol) (PVA) and poly(vinyl pyrrolidone) are used to prepare hydrogels for biomedical applications, including optical applications such as the manufacture of sensing devices, cosmetic and smart, and medical contact lenses, among others. In this study, three contact lenses were prepared by doping PVP‐PVA supportive hydrogel with 0.1, 0.5, and 1 wt% of laboratory‐manufactured Ag NPs. The work demonstrates the evaluation of vision correction through each lens and the effect of changing the concentration of silver on its refractive index. The simulation involved the design and simulation of an aberrated human eye based on the Liou and Brennan model (LBM), and the insertion of the contact lenses for vision correction using the ZEMAX optical design program. This work also included a study of the antimicrobial properties of the resulting hydrogel contact lenses doped with Ag NPs. The resulting refractive index of one PVP‐PVA‐Ag lens was relatively high at 532 nm = 1.604, which made the lens provide the highest image contrast (the lowest MTF curve degradation) of 0.883 ± 0.027 at 20 cycles/mm and an RMS nearly the Airy disc diameter of 3.983 μm. PVA was used in combination with PVP for stabilizing Ag NPs to give the contact lenses an antibacterial property. Finally, the optimum contact lens with a 1 wt% Ag NPs concentration showed the highest inhibition activity.

Publisher

Wiley

Subject

Materials Chemistry,Marketing,Polymers and Plastics,General Chemical Engineering,General Chemistry

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