4.3 Article

Ocular toxicity assessment of nanoemulsion in-situ gel formulation of fluconazole

期刊

HUMAN & EXPERIMENTAL TOXICOLOGY
卷 40, 期 12, 页码 2039-2047

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SAGE PUBLICATIONS LTD
DOI: 10.1177/09603271211017314

关键词

Ocular drug delivery; fluconazole; HET-CAM; MTT; Draize test

资金

  1. Hamadan University of Medical Science, Hamadan, I.R. Iran [9803212158]

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The study aimed to develop an optimized fluconazole nanoemulsion in-situ gel formulation to improve ocular bioavailability of fluconazole. The formulation was found to be non-toxic and non-irritant to eye tissues, making it a suitable and safe alternative for future ocular delivery of fluconazole.
Purpose: Fluconazole is an effective anti-fungal drug. Due to the limitations of fluconazole, such as poor water solubility and consequently low ocular bioavailability, an optimized fluconazole nanoemulsion in-situ gel formulation (temperature-sensitive) was developed. Methods and Materials: To verify formulation's safety for ophthalmic use, preparation was tested for potential ocular toxicity using a cell viability assay on retinal cells. The hen's egg test-chorioallantoic membrane (HET-CAM), as a borderline test between in vivo and in vitro techniques, was chosen for investigating the irritation potential of the formulation. HET-CAM test was done by adding the formulation directly to the CAM surface and monitoring the vessels visually in terms of irritation reactions. Eye tolerance was determined using the modified Draize test. Results: Viability assay on retinal cells displayed that fluconazole nanoemulsion in-situ gel formulation was non-toxic and can be safely used in the eye at concentrations of 0.1% and 0.5%. HET-CAM and Draize tests revealed that optimized formulation of fluconazole did not result in any irritation and was considered non-irritant and well-tolerated for ocular use. Conclusion: Regarding to the findings of the three mentioned methods, fluconazole nanoemulsion in-situ gel formulation is harmless and as a proper and safe alternative, can be considered for ocular delivery of fluconazole in the future.

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