Valiante Vito, Monteiro Maria Cândida, Martín Jesús, Altwasser Robert, El Aouad Noureddine, González Ignacio, Kniemeyer Olaf, Mellado Emilia, Palomo Sara, de Pedro Nuria, Pérez-Victoria Ignacio, Tormo José R, Vicente Francisca, Reyes Fernando, Genilloud Olga, Brakhage Axel A
Department of Molecular and Applied Microbiology, Leibniz Institute for Natural Product Research and Infection Biology (HKI), Jena, Germany.
Fundación MEDINA, Centro de Excelencia en Investigación de Medicamentos Innovadores en Andalucía, Granada, Spain.
Antimicrob Agents Chemother. 2015 Sep;59(9):5145-53. doi: 10.1128/AAC.00683-15. Epub 2015 Jun 8.
Fungal infections have increased dramatically in the last 2 decades, and fighting infectious diseases requires innovative approaches such as the combination of two drugs acting on different targets or even targeting a salvage pathway of one of the drugs. The fungal cell wall biosynthesis is inhibited by the clinically used antifungal drug caspofungin. This antifungal activity has been found to be potentiated by humidimycin, a new natural product identified from the screening of a collection of 20,000 microbial extracts, which has no major effect when used alone. An analysis of transcriptomes and selected Aspergillus fumigatus mutants indicated that humidimycin affects the high osmolarity glycerol response pathway. By combining humidimycin and caspofungin, a strong increase in caspofungin efficacy was achieved, demonstrating that targeting different signaling pathways provides an excellent basis to develop novel anti-infective strategies.
在过去20年中,真菌感染显著增加,对抗传染病需要创新方法,例如联合使用作用于不同靶点的两种药物,甚至针对其中一种药物的补救途径。临床上使用的抗真菌药物卡泊芬净可抑制真菌细胞壁的生物合成。已发现,来自对20000种微生物提取物文库筛选中鉴定出的一种新天然产物潮霉素,可增强这种抗真菌活性,而潮霉素单独使用时没有显著效果。对转录组和选定的烟曲霉突变体进行分析表明,潮霉素影响高渗甘油反应途径。通过联合使用潮霉素和卡泊芬净,卡泊芬净的疗效显著提高,这表明针对不同的信号通路为开发新型抗感染策略提供了良好基础。