Brouwer Carlo P J M, Theelen Bart, van der Linden Youp, Sarink Nick, Rahman Mahfuzur, Alwasel Saleh, Cafarchia Claudia, Welling Mick M, Boekhout Teun
CBMR Scientific Inc., Edmonton, AB T6J4V9, Canada.
Westerdijk Fungal Biodiversity Institute, Uppsalalaan 8, 3584 CT Utrecht, The Netherlands.
Antibiotics (Basel). 2024 Aug 22;13(8):790. doi: 10.3390/antibiotics13080790.
The increasing resistance of yeasts against commonly used antifungal drugs dictates the need for novel antifungal compounds. Human lactoferrin-based peptides show a broad spectrum of antimicrobial activities. Various assays were performed to find the optimal growth conditions of the yeasts and to assess cell viability, using media with low lipid content to avoid peptide binding to medium components.
In the current study, we tested the antimicrobial susceptibility of 30 strains of that cover the known IGS1 genotypic variation.
hLF(1-11) inhibited the growth of all species tested, resulting in minimum inhibitory concentrations (MIC) values ranging from 12.5 to 100 μg/mL. In the combinatory tests, the majority of fractional inhibitory concentration indexes (FIC) for the tested strains of were up to 1.0, showing that there is a synergistic or additive effect on the efficacy of the antifungal drugs when used in combination with hLF(1-11).
Results showed that hLF(1-11) could be combined with fluconazole or amphotericin for the antimicrobial treatment of resistant strains, enhancing the potency of these antifungal drugs, resulting in an improved outcome for the patient.
酵母对常用抗真菌药物的耐药性不断增加,这就需要新型抗真菌化合物。基于人乳铁蛋白的肽具有广泛的抗菌活性。进行了各种试验,以寻找酵母的最佳生长条件并评估细胞活力,使用低脂含量的培养基以避免肽与培养基成分结合。
在本研究中,我们测试了涵盖已知IGS1基因型变异的30株菌株的抗菌敏感性。
hLF(1 - 11)抑制了所有测试菌株的生长,最低抑菌浓度(MIC)值范围为12.5至100μg/mL。在联合试验中,大多数测试菌株的部分抑菌浓度指数(FIC)高达1.0,表明与hLF(1 - 11)联合使用时,抗真菌药物的疗效具有协同或相加作用。
结果表明,hLF(1 - 11)可与氟康唑或两性霉素联合用于耐药菌株的抗菌治疗,增强这些抗真菌药物的效力,从而改善患者的治疗效果。