Department of Medical Microbiology, Radboud University Nijmegen Medical Center, Nijmegen, The Netherlands.
Med Mycol. 2011 Apr;49 Suppl 1:S82-9. doi: 10.3109/13693786.2010.499916. Epub 2010 Jul 22.
Polyphasic taxonomy has had a major impact on the species concept of the genus Aspergillus. New sibling species have been described that exhibit in vitro susceptibility profiles that differ significantly from that of Aspergillus fumigatus. While acquired resistance is an emerging problem in A. fumigatus, non-A. fumigatus Aspergillus species may be intrinsically resistant to specific classes of antifungal agents. Minimum inhibitory concentrations of amphotericin B and azoles for some of the non-A. fumigatus Aspergillus species are elevated compared to A. fumigatus. Furthermore, the clinical presentation and evolution of invasive infections caused by these species may differ from that commonly observed for A. fumigatus. As the role of the newly identified Aspergillus species in causing invasive aspergillosis remains unclear, surveillance networks that incorporate sequence-based identification of clinical isolates are needed to determine the species distribution, the clinical disease and outcome of patients with invasive aspergillosis. Preclinical and clinical studies are needed to further improve the methods for in vitro susceptibility testing and to investigate the impact of elevated MICs on antifungal drug efficacy.
多相分类学对烟曲霉属的物种概念产生了重大影响。已经描述了新的姊妹种,它们在体外药敏谱上与烟曲霉有显著差异。虽然获得性耐药是烟曲霉的一个新出现的问题,但非烟曲霉的曲霉菌种可能对特定类别的抗真菌药物具有内在耐药性。与烟曲霉相比,一些非烟曲霉曲霉菌种对两性霉素 B 和唑类药物的最小抑菌浓度升高。此外,这些种引起的侵袭性感染的临床表现和演变可能与通常观察到的烟曲霉不同。由于新鉴定的曲霉菌种在引起侵袭性曲霉病中的作用尚不清楚,因此需要建立包含临床分离株基于序列鉴定的监测网络,以确定侵袭性曲霉病患者的菌种分布、临床疾病和结局。需要进行临床前和临床研究,以进一步改进体外药敏试验方法,并研究 MIC 升高对抗真菌药物疗效的影响。