Fuentefria Alexandre M, Faganello Josiane, Pazzini Fabiano, Schrank Augusto, Valente Patrícia, Vainstein Marilene
Programa de Pós-Graduação em Biologia Celular e Molecular, Universidade Federal do Rio Grande do Sul, RS, Brazil.
Med Mycol. 2007 Sep;45(6):503-12. doi: 10.1080/13693780701416580.
Cryptococcus neoformans and Cryptococcus gattii are encapsulated basidiomycetous yeasts that cause meningoencephalitis. The action of killer yeasts on the growth of one hundred genotypically characterized C. neoformans var. neoformans, C. neoformans var. grubii, and C. gattii clinical and environmental isolates was evaluated. Killer studies were performed on yeast malt-methylene blue (YM-MB) agar Petri dishes, and a dendrogram was obtained based on a quantitative data matrix using the diameter of the inhibition halo. The cellular morphological characteristics of dead cells within the halo were observed by means of optical and scanning electron microscopy. There was no formation of pores on the cell surface of the sensitive cells in contact with the toxins, at least for C. neoformans. The sensitivity patterns of clinical and environmental isolates to the killer toxins demonstrated that there is correlation between killer sensitivity of Cryptococcus species or varieties and some of the killer strains. In this case, the isolates were discriminated using the killer sensitivity patterns, and this could be used as a complementary tool to PCR-fingerprinting in epidemiological studies.
新型隐球菌和格特隐球菌是可导致脑膜脑炎的有荚膜担子菌酵母。评估了杀伤性酵母对100株经基因分型的新型隐球菌新型变种、新型隐球菌格鲁比变种以及格特隐球菌临床和环境分离株生长的影响。在酵母麦芽-亚甲基蓝(YM-MB)琼脂培养皿上进行杀伤性研究,并基于使用抑菌圈直径的定量数据矩阵获得了一个树形图。通过光学显微镜和扫描电子显微镜观察抑菌圈内死细胞的细胞形态特征。至少对于新型隐球菌而言,与毒素接触的敏感细胞的细胞表面未形成孔。临床和环境分离株对杀伤性毒素的敏感性模式表明,隐球菌物种或变种的杀伤性敏感性与一些杀伤菌株之间存在相关性。在这种情况下,利用杀伤性敏感性模式对分离株进行了区分,这可作为流行病学研究中PCR指纹图谱的补充工具。