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In Vitro Interaction between Alginate Lyase and Amphotericin B against Aspergillus fumigatus Biofilm Determined by Different Methods

机译:用不同方法测定海藻酸钠裂解酶和两性霉素B对烟曲霉生物膜的体外相互作用

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摘要

Aspergillus fumigatus biofilms represent a problematic clinical entity, especially because of their recalcitrance to antifungal drugs, which poses a number of therapeutic implications for invasive aspergillosis, the most difficult-to-treat Aspergillus-related disease. While the antibiofilm activities of amphotericin B (AMB) deoxycholate and its lipid formulations (e.g., liposomal AMB [LAMB]) are well documented, the effectiveness of these drugs in combination with nonantifungal agents is poorly understood. In the present study, in vitro interactions between polyene antifungals (AMB and LAMB) and alginate lyase (AlgL), an enzyme degrading the polysaccharides produced as extracellular polymeric substances (EPSs) within the biofilm matrix, against A. fumigatus biofilms were evaluated by using the checkerboard microdilution and the time-kill assays. Furthermore, atomic force microscopy (AFM) was used to image and quantify the effects of AlgL-antifungal combinations on biofilm-growing hyphal cells. On the basis of fractional inhibitory concentration index values, synergy was found between both AMB formulations and AlgL, and this finding was also confirmed by the time-kill test. Finally, AFM analysis showed that when A. fumigatus biofilms were treated with AlgL or polyene alone, as well as with their combination, both a reduction of hyphal thicknesses and an increase of adhesive forces were observed compared to the findings for untreated controls, probably owing to the different action by the enzyme or the antifungal compounds. Interestingly, marked physical changes were noticed in A. fumigatus biofilms exposed to the AlgL-antifungal combinations compared with the physical characteristics detected after exposure to the antifungals alone, indicating that AlgL may enhance the antibiofilm activity of both AMB and LAMB, perhaps by disrupting the hypha-embedding EPSs and thus facilitating the drugs to reach biofilm cells. Taken together, our results suggest that a combination of AlgL and a polyene antifungal may prove to be a new therapeutic strategy for invasive aspergillosis, while reinforcing the EPS as a valuable antibiofilm drug target.
机译:烟曲霉生物膜代表了一个有问题的临床实体,尤其是因为它们对抗真菌药物的顽固性,这对最难以治疗的与曲霉菌相关的侵袭性曲霉菌病具有许多治疗意义。尽管两性霉素B(AMB)脱氧胆酸盐及其脂质制剂(例如脂质体AMB [LAMB])的抗生物膜活性已有充分文献记载,但这些药物与非抗真菌药联合使用的有效性知之甚少。在本研究中,多烯抗真菌剂(AMB和LAMB)与藻酸盐裂解酶(AlgL)之间的体外相互作用被评估,该酶通过降解生物膜基质中作为胞外聚合物质(EPS)产生的多糖对抗烟曲霉生物膜。棋盘微量稀释和时间杀灭测定。此外,原子力显微镜(AFM)用于成像和量化AlgL-抗真菌药组合对生长生物膜的菌丝细胞的作用。基于分数抑制浓度指数值,在AMB配方和AlgL之间均发现了协同作用,这一发现也通过时间杀伤试验得到了证实。最后,原子力显微镜分析显示,仅用AlgL或多烯以及它们的组合处理烟曲霉生物膜时,与未处理的对照相比,观察到菌丝厚度的减少和粘附力的增加,这可能是由于对酶或抗真菌化合物的不同作用。有趣的是,与单独暴露于抗真菌剂后检测到的物理特征相比,暴露于AlgL与抗真菌药组合的烟曲霉生物膜有明显的物理变化,这表明AlgL可能会增强AMB和LAMB的抗生物膜活性,可能是通过破坏细胞膜而引起的。包埋EPS,从而促进药物到达生物膜细胞。两者合计,我们的结果表明AlgL和多烯抗真菌药的组合可能被证明是侵袭性曲霉病的一种新的治疗策略,同时增强EPS作为有价值的抗生物膜药物靶标。

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