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October 2, 2025Gels4 citationsOpen Access

Optimized Ion-Sensitive Hydrogels Based on Gellan Gum and Arabinogalactan for the Treatment of Dry Eye Disease

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VPValentina PaganiniUniversity of PisaSTSilvia TampucciUniversity of PisaSBSofía Gisella BrignoneUniversity of Pisa

Key Points

  • The selected GG(0.1%)/AG(0.2%) formulation enhances viscosity significantly upon dilution in artificial tear fluid, supporting retention.
  • In vivo studies in rabbits showed improved precorneal retention and therapeutic efficacy of the ion-sensitive hydrogel compared to conventional treatments.
  • Using a Design of Experiments approach, the rheological behavior of various formulations was assessed for optimal gelation conditions.
  • The formula demonstrated no cytotoxic effects, suitable viscoelastic properties, and stability over time, indicating it may outperform traditional artificial tears.

Abstract

Dry eye disease (DED) is a multifactorial condition characterized by insufficient tear film stability and ocular discomfort. Conventional artificial tears offer limited efficacy due to short precorneal residence time. This study aimed to develop and optimize ion-sensitive in situ gelling formulations based on low-acyl gellan gum (GG) and arabinogalactan (AG) to enhance retention and therapeutic efficacy in DED. Various buffer systems were screened to identify optimal gelation conditions upon interaction with artificial tear fluid (ATF). Formulations were characterized by pH, osmolality, wettability, thermal behavior, viscosity, and viscoelastic properties. A Design of Experiments (DoE) approach was employed to understand the influence of GG and AG concentrations on rheological behavior. The selected formulation, GG(0.1%)/AG(0.2%), demonstrated a significant viscosity increase upon ATF dilution, suitable viscoelastic properties, enhanced mucoadhesion compared to hyaluronic acid, improved ferning patterns, no cytotoxic effects, and stability over time. In vivo studies in rabbits confirmed prolonged precorneal retention of the fluorescently labeled formulation. These results suggest that the GG/AG-based hydrogel is a promising strategy for improving the performance of artificial tears in DED treatment.

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Cite This Study

Paganini et al. (2025) studied this question.

synapsesocial.com/papers/68de6f3f83cbc991d0a22acfhttps://doi.org/10.3390/gels11100787
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