Gil C, Pérez-Diaz R, Nombela C
Departamento de Microbiolgía II, Facultad de Farmacia, Universidad Complutense, Madrid, Spain.
J Med Vet Mycol. 1994;32(3):151-62. doi: 10.1080/02681219480000221.
The susceptibilities to several antifungal agents of three classes of Candida albicans morphological mutants were studied. Also investigated were the morphological effects of these drugs, at sub-inhibitory concentrations. An F- strain (1001-92'), unable to produce mycelium, proved to be significantly more sensitive to ketoconazole when compared with the wild-type. A mutant representative of a second class, namely 1001 FR, that grew permanently as filamentous pseudomycelial structures, showed susceptibilities similar to those of the wild-type. Strains NEL102 and NEL103 belonged to a third class of mutants whose blastospores gave rise to filamentous hypha-type structures in the absence of any inducer. These strains were somewhat more sensitive to amphotericin B, fluconazole and miconazole than the wild-type. 5-Fluorocytosine caused a pronounced bending of the filamentous structures, whereas amphotericin B prevented filamentous growth. In the presence of the azole antifungals the cells appeared as aggregates or chains of swollen structures, many of them with a bud-like formation. The effect of cilofungin in preventing the formation of regular filamentous structures was even more pronounced. Under conditions of germ tube formation, NEL102 proved to be significantly more sensitive to cilofungin than in nutrient medium, in contrast with its response to ketoconazole and fluconazole which only inhibited this strain at concentrations much higher than in nutrient medium. The cilofungin sensitive function(s) of NEL102 could be over-expressed in Lee's medium, leading to an enhanced sensitivity to the drug that was less marked in the wild-type strain.
研究了三类白色念珠菌形态突变体对几种抗真菌药物的敏感性。还研究了这些药物在亚抑制浓度下的形态学效应。一株无法产生菌丝体的F-菌株(1001-92'),与野生型相比,对酮康唑的敏感性显著更高。第二类突变体的代表菌株1001 FR,其永久生长为丝状假菌丝结构,其敏感性与野生型相似。菌株NEL102和NEL103属于第三类突变体,其芽生孢子在没有任何诱导剂的情况下可形成丝状菌丝型结构。这些菌株对两性霉素B、氟康唑和咪康唑的敏感性略高于野生型。5-氟胞嘧啶导致丝状结构明显弯曲,而两性霉素B则阻止丝状生长。在唑类抗真菌药物存在的情况下,细胞呈现为聚集物或肿胀结构的链状,其中许多具有芽状形成。西洛芬净在阻止规则丝状结构形成方面的作用更为明显。在芽管形成条件下,与NEL102对酮康唑和氟康唑的反应相比,该菌株对西洛芬净的敏感性明显更高,酮康唑和氟康唑只有在浓度远高于营养培养基时才会抑制该菌株。NEL102对西洛芬净敏感的功能在李氏培养基中可能会过度表达,导致对该药物的敏感性增强,而在野生型菌株中这种增强不太明显。