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Screening method to identify inhibitors of siderophore biosynthesis in the opportunistic fungal pathogen, Aspergillus fumigatus.

机译:筛选机会性真菌病原体烟曲霉中铁载体生物合成抑制剂的筛选方法。

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AIMS: Aspergillus fumigatus is the most common cause of airborne mould infections in immunocompromised patients worldwide. Our aim was to develop a method to identify agents that inhibit siderophore biosynthesis because this pathway is unique to the fungus and is essential for virulence. METHODS AND RESULTS: A high-throughput two-step screening assay was developed using 96-well plates in which fungal growth and siderophore production is assessed spectrophotometrically. If a compound inhibits growth only in iron-limited medium (screen 1), its effect on siderophore production is then determined (screen 2). The proof of concept was demonstrated using a known antifungal agent, amphotericin B, and a strain of A. fumigatus deficient in siderophore production. CONCLUSIONS: The two-stage screening method clearly identified growth defects in A. fumigatus related specifically to siderophore biosynthesis. SIGNIFICANCE AND IMPACT OF THE STUDY: The increasing incidence of life-threatening fungal infections has produced an urgent need for novel antifungal agents. The method described in this report will facilitate the identification of novel antifungal compounds that inhibit a pathway critical for A. fumigatus virulence and have a reduced probability of affecting host metabolism.
机译:目的:烟曲霉是全世界免疫功能低下患者中空气传播霉菌感染的最常见原因。我们的目标是开发一种方法来鉴定抑制铁载体生物合成的试剂,因为该途径是真菌独有的,并且对毒力至关重要。方法和结果:使用96孔板开发了一种高通量的两步筛选测定法,其中分光光度法评估了真菌的生长和铁载体的产生。如果化合物仅在铁受限的培养基中抑制生长(屏幕1),则可以确定其对铁载体生成的影响(屏幕2)。使用已知的抗真菌剂两性霉素B和缺乏铁载体生产的烟曲霉菌株证明了这一概念的证明。结论:两阶段筛选方法清楚地确定了烟曲霉的生长缺陷,该缺陷与铁载体的生物合成有关。研究的意义和影响:威胁生命的真菌感染的发病率不断增加,因此迫切需要新型抗真菌剂。本报告中描述的方法将有助于鉴定新型抗真菌化合物,这些化合物可抑制对烟曲霉毒力至关重要的途径,并降低影响宿主代谢的可能性。

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