物种复合体
克莱德
生物
感官
抗真菌
两性霉素B
动物
微生物学
核糖体DNA
分类学(生物学)
分离(微生物学)
系统发育学
抗生素
分类单元
抗真菌药
作者
Elaine Cristina Francisco,Felipe de Camargo Ribeiro,João Nóbrega de Almeida,Diego Betto Pedoni,Daniel Archimedes da Matta,Maribel Dolande,Analy Salles de Azevedo Melo,Ricardo Ferreira Lima,Valério Rodrigues Aquino,Dora Corzo-León,Jeannete Zurita,Jorge Alberto Cortés,Márcio Nucci,Arnaldo Lopes Colombo
出处
期刊:Microbiology spectrum
[American Society for Microbiology]
日期:2023-09-12
卷期号:11 (5): e0511522-e0511522
被引量:7
标识
DOI:10.1128/spectrum.05115-22
摘要
ABSTRACT Members of the Meyerozyma guilliermondii species complex are able to cause superficial and life-threatening systemic infections with low susceptibility to azoles and echinocandins. We tested 130 bloodstream M. guilliermondii complex isolates collected from eight Latin American medical centers over 18 years (period 1 = 2000–2008 and period 2 = 2009–2018) to investigate trends in species distribution and antifungal resistance. The isolates were identified by rDNA ITS region sequencing, and antifungal susceptibility tests were performed against fluconazole, voriconazole, anidulafungin, and amphotericin B using the CLSI microbroth method. M. guilliermondii sensu stricto (s.s.; n = 116) was the most prevalent species, followed by Meyerozyma caribbica ( n = 12) and Meyerozyma carpophila ( n = 2). Based on rDNA ITS identification, three clades within M. guilliermondii sensu stricto were characterized (clade 1 n = 94; clade 2 n = 19; and clade 3 n = 3). In the second period of study, we found a substantial increment in the isolation of M. caribbica (3.4% versus 13.8%; P = 0.06) and clade 2 M. guilliermondii s.s. exhibiting lower susceptibility to one or more triazoles. IMPORTANCE Yeast-invasive infections play a relevant role in human health, and there is a concern with the emergence of non- Candida pathogens causing disease worldwide. There is a lack of studies addressing the prevalence and antifungal susceptibility of different species within the M. guilliermondii complex that cause invasive infections. We evaluated 130 episodes of M. guilliermondii species complex candidemia documented in eight medical centers over 18 years. We detected the emergence of less common species within the Meyerozyma complex causing candidemia and described a new clade of M. guilliermondii with limited susceptibility to triazoles. These results support the relevance of continued global surveillance efforts to early detect, characterize, and report emergent fungal pathogens exhibiting limited susceptibility to antifungals.
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