Bożena Lucyna Karolewicz
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Articles (16)
The Effect of High-Pressure Homogenization Conditions on the Physicochemical Properties and Stability of Designed Fluconazole-Loaded Ocular Nanoemulsions
The growing interest in high-energy emulsification is a result of its scalability, which is important from an industrial perspective and allows for a more reproducible and efficient production of pharmaceutical formulations. The aim of this study was to evaluate the effect of composition, mainly a fixed surfactant/cosurfactant (Smix) ratio, their concentration, and the parameters of high-pressure homogenization (HPH) processing on the quality and stability of ophthalmic fluconazole-loaded nanoemulsions. After a physicochemical analysis of nanoemulsions containing 20% w/w of oil, as optimal conditions for the HPH process, three cycles at a pressure of 1000 bar were established, obtaining formulations with an average droplet diameter size in the range of 80.63–129.68 nm and PDI values below 0.25. While it was expected that an increasing cosurfactant concentration decreased the droplet size, in the case of formulations containing Tween 20 and 10% w/w of cosurfactants, “over-processing” was observed, identified by the droplet size and polydispersity index increase. Consecutively, the selected formulations were evaluated for in vitro drug release in Franz’s cell, antifungal activity, and 30-day stability using NMR spectroscopy. An antifungal activity test showed no significant difference in the antifungal activity between optimal fluconazole-loaded nanoemulsions and a 0.3% aqueous drug solution, but previously, research showed that prepared formulations were characterized by a higher viscosity and satisfactory prolonged release compared to a control. In a 30-day stability study, it was observed that higher HLB values of the used surfactants decreased the stability of the formulations in the following order: Kolliphor EL, Tween 80, Tween 20. The NMR spectra confirmed that Kolliphor EL-based formulations ensured the higher stability of the nanoemulsion composition in comparison to Tween 80 and a better stabilizing effect of propylene glycol as a cosurfactant in comparison to PEG 200. Therefore, the optimization of HPH technology should be focused on the selection of Smix and the Smix:oil ratio in order to prepare stable formulations of high quality.
Year:
2023
Collaborators (21)
Jakub Hadzik
Medical University of Silesia
Dominik M. Marciniak
Wroclaw Medical University
Yaroslav Khimyak
Professor at University of East Anglia
University of East Anglia
Karol P. Nartowski
Assistant Professor
Uniwersytet Medyczny im Piastów Śląskich we Wrocławiu
Maciej Nowak
Wroclaw Medical University
Tomasz Konopka
Professor
Medical University of Silesia
Bożena Grimling
Professor assistant
Medical University of Silesia
Katarzyna Malec
research and teaching assistant
Wroclaw Medical University
Anna Choromańska
Wroclaw Medical University
Artur Owczarek
Wroclaw Medical University
Anna M. Gołkowska
Research and teaching assistant
Wroclaw Medical University
Hanna Czapor-Irzabek
Medical University of Silesia
Adam Matkowski
Wroclaw Medical University
Izabela Nawrot-Hadzik
Wroclaw Medical University
Urszula Nawrot
assistance professor
Wroclaw Medical University
Kamil Jurczyszyn
Wroclaw Medical University
Igor Mucha
Medical University of Silesia
Agata Górniak
Medical University of Silesia
Patrycja Szymczyk-Ziółkowska
University of Wrocław
Dinu Iuga
University of Warwick
Agnieszka Matera-Witkiewicz
Assistant Professor, Wroclaw Medical Uiversity Biobank Manager
Medical University of Silesia

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