Buonocore Carmine, Giugliano Rosa, Della Sala Gerardo, Palma Esposito Fortunato, Tedesco Pietro, Folliero Veronica, Galdiero Massimiliano, Franci Gianluigi, de Pascale Donatella
Department of Ecosustainable Marine Biotechnology, Stazione Zoologica Anton Dohrn, Via Ammiraglio Acton, 55, 80133 Naples, Italy.
Institute of Biochemistry and Cell Biology, National Research Council, 80131 Naples, Italy.
Pharmaceutics. 2023 Feb 19;15(2):700. doi: 10.3390/pharmaceutics15020700.
is a Gram-positive opportunistic human pathogen responsible for severe infections and thousands of deaths annually, mostly due to its multidrug-resistant (MDR) variants. The cell membrane has emerged as a promising new therapeutic target, and lipophilic molecules, such as biosurfactants, are currently being utilized. Herein, we evaluated the antimicrobial activity of a rhamnolipids mixture produced by the Antarctic marine bacterium M15. We demonstrated that our mixture has bactericidal activity in the range of 12.5-50 µg/mL against a panel of clinical MDR isolates of , and that the mixture eradicated the bacterial population in 30 min at MIC value, and in 5 min after doubling the concentration. We also tested abilities of RLs to interfere with biofilm at different stages and determined that RLs can penetrate biofilm and kill the bacteria at sub-MICs values. The mixture was then used to functionalize a cotton swab to evaluate the prevention of proliferation. We showed that by using 8 µg of rhamnolipids per swab, the entire bacterial load is eradicated, and just 0.5 µg is sufficient to reduce the growth by 99.99%. Our results strongly indicate the possibility of using this mixture as an additive for wound dressings for chronic wounds.
是一种革兰氏阳性机会致病菌,每年导致严重感染和数千人死亡,主要归因于其多重耐药(MDR)变体。细胞膜已成为一个有前景的新治疗靶点,目前正在使用亲脂性分子,如生物表面活性剂。在此,我们评估了南极海洋细菌M15产生的鼠李糖脂混合物的抗菌活性。我们证明,我们的混合物对一组临床MDR分离株具有12.5 - 50 µg/mL范围内的杀菌活性,并且该混合物在MIC值下30分钟内根除细菌群体,浓度加倍后5分钟内根除。我们还测试了鼠李糖脂在不同阶段干扰生物膜的能力,并确定鼠李糖脂可以穿透生物膜并在亚MIC值下杀死细菌。然后将该混合物用于使棉签功能化,以评估对增殖的预防作用。我们表明,每根棉签使用8 µg鼠李糖脂可根除全部细菌负荷,仅0.5 µg就足以将生长减少99.99%。我们的结果强烈表明使用这种混合物作为慢性伤口敷料添加剂的可能性。