AI Article Synopsis

  • - The study evaluated a new tear substitute called Trimix, which contains cross-linked hyaluronic acid, lipids, and trehalose, focusing on its effects on conjunctival epithelial cells using advanced imaging techniques like scanning electron microscopy (SEM).
  • - An ex vivo examination showed that Trimix increased the density of microvilli on conjunctival cells over time, while the in vivo evaluation indicated significant improvements in ocular surface health after 30 days of treatment among three patients with varying levels of inflammation.
  • - Overall, the results highlighted Trimix's strong epitheliotropic effects and extended residence time on the eye, leading to better clinical outcomes and restoration of eye surface conditions.

Article Abstract

The authors performed an ex vivo and in vivo evaluation of the ultrastructural effects on the conjunctival epithelial cells of a new multiple-action tear substitute containing cross-linked hyaluronic acid, lipids and trehalose (Trimix), using scanning electron microscopy (SEM) with conjunctival impression cytology. The ex vivo study highlights the persistence and distribution of the product at 5 and 60 min on a monolayer of conjunctival epithelial cells and an increase in microvilli density at the 60 min evaluation. In vivo examination was conducted on three subjects with different grades of ocular surface inflammation, treated with one drop of the product twice daily for thirty days. At the baseline (T) and twelve hours after the last administration of the tear drop (T), impression cytology of the upper bulbar conjunctiva for SEM evaluation of conjunctival epithelial cells was carried out. Slit lamp examination (SLE), corneal and conjunctival Fluotest, tear film break-up time (TBUT), and ocular surface disease index (OSDI) questionnaires were also performed to correlate the ultrastructural results with the clinical findings. After 30 days of treatment, a significant improvement in all clinical and symptomatic parameters and in the condition of the ocular surface was detected, with microvillar regeneration and strengthening in all the patients, and a complete restoration in 2/3 of them. The persistence and distribution of the product on the epithelial cells was also noted 12 h after the last administration. The results, therefore, suggest a marked epitheliotropic effect along with a high residence time of the tear substitute.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11429469PMC
http://dx.doi.org/10.3390/biomedicines12091945DOI Listing

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