Sosnowska Katarzyna, Szekalska Marta, Piktel Ewelina, Bucki Robert, Wolska Eliza, Misztalewska-Turkowicz Iwona, Markiewicz Karolina Halina, Wilczewska Agnieszka Zofia, Winnicka Katarzyna
Department of Pharmaceutical Technology, Medical University of Białystok, Mickiewicza 2C, 15-222 Białystok, Poland.
Independent Laboratory of Nanomedicine, Medical University of Białystok, 15-222 Białystok, Poland.
Pharmaceutics. 2025 Aug 14;17(8):1055. doi: 10.3390/pharmaceutics17081055.
: Despite the continuous development of medicine, the treatment of dermatological fungal infections is difficult due to their chronic nature, recurrence, and resistance of some pathogens to standard therapies. In order to improve the effectiveness of treatment, not only are new active substances with antifungal activity synthesized, but new, unconventional carriers are also developed for substances already used. : Therefore, the focus of this research was to evaluate the possibility of using a combination of two cross-linking techniques for sodium alginate ionic cross-linking with Zn ions and electrostatic interaction with ε-poly-L-lysine. The pharmaceutical properties, antifungal activity against strains, and compatibility with human fibroblasts of the designed hydrogels were assessed. : It was shown that the double cross-linking process increased the viscosity of the developed hydrogels, improved bioadhesive properties to hairless mice skin, and provided an extended release profile of the active substance. In addition, obtained formulations were characterized by improved antifungal effect against , , and . Prepared hydrogels expressed biocompatibility with human fibroblasts. : Dual-cross-linked alginate hydrogels are a promising dermatological formulation that might improve the efficacy of posaconazole in the treatment of antifungal infections.
尽管医学不断发展,但由于皮肤真菌感染具有慢性、复发性以及一些病原体对标准疗法产生耐药性,其治疗仍很困难。为了提高治疗效果,不仅合成了具有抗真菌活性的新活性物质,还为已使用的物质开发了新型非常规载体。因此,本研究的重点是评估将两种交联技术结合使用的可能性,即海藻酸钠与锌离子进行离子交联以及与ε-聚-L-赖氨酸进行静电相互作用。对所设计水凝胶的药物性质、对菌株的抗真菌活性以及与人成纤维细胞的相容性进行了评估。结果表明,双重交联过程增加了所开发水凝胶的粘度,改善了对无毛小鼠皮肤的生物粘附特性,并提供了活性物质的缓释特性。此外,所获得的制剂对、和具有改善的抗真菌效果。制备的水凝胶表现出与人成纤维细胞的生物相容性。双重交联海藻酸盐水凝胶是一种有前景的皮肤制剂,可能会提高泊沙康唑治疗真菌感染的疗效。