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Purpose: To investigate and quantify the effect of recombinant human lubricin (rh-lubricin) on model tear film stability.
Methods: A custom-built, interferometry-based instrument called the Interfacial Dewetting and Drainage Optical Platform was used to create and record the spatiotemporal evolution of model acellular tear films. Image segmentation and analysis was performed in MATLAB to extract the most essential features from the wet area fraction versus time curve, namely the evaporative break-up time and the final wet area fraction (A10). These two parameters indicate the tear film stability in the presence of rh-lubricin in its unstressed and stressed forms.
Results: Our parameters successfully captured the trend of increasing tear film stability with increasing rh-lubricin concentration, and captured differences in rh-lubricin efficacy after various industrially relevant stresses. Specifically, aggregation and fragmentation caused by a 4-week, high temperature stress condition negatively impacted rh-lubricin's ability to maintain model tear film stability. Adsorbed rh-lubricin alone was not sufficient to resist break-up and maintain full area coverage of the model tear film surface.
Conclusions: Our results demonstrate that fragmentation and aggregation can negatively impact rh-lubricin's ability to maintain a stable tear film. In addition, the ability of rh-lubricin to maintain wetted area coverage is due to both freely dispersed and adsorbed rh-lubricin.
Translational Relevance: Our platform and analysis method provide a facile, intuitive, and clinically relevant means to quantify the effect of ophthalmic drugs and formulations intended for improving tear film stability, as well as capture differences between variants related to drug stability and efficacy.
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http://dx.doi.org/10.1167/tvst.11.9.9 | DOI Listing |
Transl Vis Sci Technol
September 2025
School of Optometry and Vision Science, University of New South Wales, Sydney, NSW, Australia.
Purpose: To investigate the short-term impact of exposure to smoke from vegetation burns on ocular surface symptoms and signs.
Methods: Woody bushfuels were burnt in an enclosed room (Flammability Laboratory, University of Tasmania, Australia) to generate particulate matter and monitored in real time (Dust Trak II). Eighteen participants (aged 20-63 years, 8 males and 10 females) fitted with respirators were seated 1.
Clin Optom (Auckl)
September 2025
Department of Orthoptics, Faculty of Medical Technology, Teikyo University, Itabashi-ku, Tokyo, Japan.
J Inflamm Res
September 2025
Department of Optometry, School of Health and Welfare, Dongshin University, Naju, Korea.
Objective: To evaluate the therapeutic efficacy and inflammatory modulatory effects of combined 0.01% atropine eye drops and orthokeratology (OK) lenses in controlling myopia progression among adolescent patients.
Methods: This retrospective study analyzed clinical data from 90 adolescent patients (90 eyes) with myopia treated from April 2021 to June 2023.
Arch Soc Esp Oftalmol (Engl Ed)
September 2025
Grupo de investigación GIESVI, Facultad de Optometría, Universidad Santo Tomás, Bucaramanga, Colombia.
Objective: To determine the state of ocular surface and tear film in college students who are users of inhalants, mainly vapers.
Methods: We conducted a descriptive, observational, and cross-sectional study with 62 participants whose sociodemographic characteristics, ocular surface status, tear film and variables related to vaping were evaluated. Individuals with a higher (5-7 times per week of consumption) and lower frequency of vaping (1-4 times per week of consumption) were evaluated.
Front Med (Lausanne)
August 2025
Eye Clinic, San Luigi Gonzaga University Hospital, University of Turin, Orbassano, Italy.
Purpose: This study aimed to revise data published in the literature on the effects of cataract surgery on tear film characteristics, in relation to personal clinical surgical experience.
Methods: A search was undertaken using PubMed (all years). Search terms included 'cataract surgery', 'phacoemulsification', 'cataract extraction', and 'manual small-incision cataract surgery', combined at first with 'ocular surface' and 'lacrimal film'.