Szekalska Marta, Wróblewska Magdalena, Czajkowska-Kośnik Anna, Sosnowska Katarzyna, Misiak Paweł, Wilczewska Agnieszka Zofia, Winnicka Katarzyna
Department of Pharmaceutical Technology, Medical University of Białystok, Mickiewicza 2c, 15-222 Białystok, Poland.
Department of Polymers and Organic Synthesis, Faculty of Chemistry, University of Białystok, 15-245 Białystok, Poland.
Materials (Basel). 2023 Jan 1;16(1):403. doi: 10.3390/ma16010403.
species are opportunistic fungi, which are primary causative agents of vulvovaginal candidiasis. The cure of candidiasis is difficult, lengthy, and associated with the fungi resistivity. Therefore, the research for novel active substances and unconventional drug delivery systems providing effective and safe treatment is still an active subject. Microparticles, as multicompartment dosage forms due to larger areas, provide short passage of drug diffusion, which might improve drug therapeutic efficiency. Sodium alginate is a natural polymer from a polysaccharide group, possessing swelling, mucoadhesive, and gelling properties. Gelatin A is a natural high-molecular-weight polypeptide obtained from porcine collagen. The purpose of this study was to prepare microparticles by the spray-drying of alginate/gelatin polyelectrolyte complex mixture, with a novel antifungal drug-luliconazole. In the next stage of research, the effect of gelatin presence on pharmaceutical properties of designed formulations was assessed. Interrelations among polymers were evaluated with thermal analysis and Fourier transform infrared spectroscopy. A valid aspect of this research was the in vitro antifungal activity estimation of designed microparticles using species: , , and . It was shown that the gelatin addition affected the particles size, improved encapsulation efficiency and mucoadhesiveness, and prolonged the drug release. Moreover, gelatin addition to the formulations improved the antifungal effect against species.
念珠菌属是机会性真菌,是外阴阴道念珠菌病的主要病原体。念珠菌病的治疗困难、疗程长且与真菌耐药性有关。因此,寻找新型活性物质和非常规药物递送系统以提供有效且安全的治疗方法仍是一个活跃的研究课题。微粒作为具有较大表面积的多室剂型,可使药物扩散路径缩短,这可能会提高药物治疗效果。海藻酸钠是一种来自多糖类的天然聚合物,具有膨胀、粘膜粘附和凝胶化特性。明胶A是从猪胶原中获得的天然高分子量多肽。本研究的目的是通过喷雾干燥海藻酸盐/明胶聚电解质复合物混合物与新型抗真菌药物卢立康唑来制备微粒。在研究的下一阶段,评估了明胶的存在对所设计制剂药学性质的影响。通过热分析和傅里叶变换红外光谱法评估了聚合物之间的相互关系。本研究的一个重要方面是使用白色念珠菌、光滑念珠菌和热带念珠菌对所设计微粒进行体外抗真菌活性评估。结果表明,添加明胶会影响颗粒大小,提高包封效率和粘膜粘附性,并延长药物释放时间。此外,在制剂中添加明胶可提高对念珠菌属的抗真菌效果。