English

Dewetting Characteristics of Contact Lenses Coated with Wetting Agents

Soft Condensed Matter 2021-12-28 v1

Abstract

Hypothesis: Although wetting agents have been developed to limit tear film dewetting over contact lenses, systematic analyses correlating wetting agents properties to mechanisms of the tear film destabilization are not readily available. Clarifying destabilization characteristics across key physio-chemical variables will provide a rational basis for identifying optimal wetting agents. Experiments: We employ an in-house, in vitro platform to comprehensively evaluate drainage and dewetting dynamics of five wetting agents across seventeen different formulations and two model tear film solutions: phosphate-buffered saline (PBS) and artificial tear solution (ATS). We consider the film thickness evolution, film thickness at breakup, dewetted front propagation, and develop correlations to contact angle to compare the samples. Findings: Zwitterionic wetting agents effectively stabilize the tear film by reducing the film thickness at the onset of dewetting, and delaying dewetted region propagation across the lens. Furthermore, tuning wetting agent surface concentrations in binary mixtures can enhance wetting characteristics. Finally, despite disparities in wetting agent molecular properties, the time to dewet 50%50\% of the lens scales linearly with the product of the receding contact angle and contact angle hysteresis. Hence, we fundamentally establish the importance of minimizing both the absolute contact angle values and contact angle hysteresis for effective wetting performance.

Keywords

Cite

@article{arxiv.2112.12896,
  title  = {Dewetting Characteristics of Contact Lenses Coated with Wetting Agents},
  author = {Vineeth Chandran Suja and Archana Verma and Endre Joachim Mossige and Kiara Cui and Vincent Xia and Yong Zhang and Dola Sinha and Scott Joslin and Gerald G. Fuller},
  journal= {arXiv preprint arXiv:2112.12896},
  year   = {2021}
}

Comments

12 Pages, 5 Figures, Key words: Contact lens, tear film dewetting, interferometry, dynamic contact angles