Self‐Lubricating, Living Contact Lenses

Author:

Puertas‐Bartolomé María12,Gutiérrez‐Urrutia Izabook3,Teruel‐Enrico Lara Luana1,Duong Cao Nguyen1,Desai Krupansh1,Trujillo Sara1,Wittmann Christoph3,del Campo Aránzazu12ORCID

Affiliation:

1. INM‐Leibniz Institute for New Materials Campus D2 2 66123 Saarbrücken Germany

2. Chemistry Department Saarland University 66123 Saarbrücken Germany

3. Institute for Systems Biotechnology Saarland University Campus A1 5 66123 Saarbrücken Germany

Abstract

AbstractThe increasing prevalence of dry eye syndrome in aging and digital societies compromises long‐term contact lens (CL) wear and forces users to regular eye drop instillation to alleviate discomfort. Here a novel approach with the potential to improve and extend the lubrication properties of CLs is presented. This is achieved by embedding lubricant‐secreting biofactories within the CL material. The self‐replenishable reservoirs autonomously produce and release hyaluronic acid (HA), a natural lubrication and wetting agent, long term. The hydrogel matrix regulates the growth of the biofactories and the HA production, and allows the diffusion of nutrients and HA for at least 3 weeks. The continuous release of HA sustainably reduces the friction coefficient of the CL surface. A self‐lubricating CL prototype is presented, where the functional biofactories are contained in a functional ring at the lens periphery, outside of the vision area. The device is cytocompatible and fulfils physicochemical requirements of commercial CLs. The fabrication process is compatible with current manufacturing processes of CLs for vision correction. It is envisioned that the durable‐by‐design approach in living CL could enable long‐term wear comfort for CL users and minimize the need for lubricating eye drops.

Funder

Leibniz-Gemeinschaft

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Reference64 articles.

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