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Species-specific and drug-specific differences in susceptibility of candida biofilms to echinocandins: Characterization of less common bloodstream isolates

机译:念珠菌生物膜对棘球and素敏感性的物种特异性和药物特异性差异:较不常见的血液分离物的表征

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Candida species other than Candida albicans are increasingly recognized as causes of biofilm-associated infections. This is a comprehensive study that compared the in vitro activities of all three echinocandins against biofilms formed by different common and infrequently identified Candida isolates. We determined the activities of anidulafungin (ANID), caspofungin (CAS), and micafungin (MFG) against planktonic cells and biofilms of bloodstream isolates of C. albicans (15 strains), Candida parapsilosis (6 strains), Candida lusitaniae (16 strains), Candida guilliermondii (5 strains), and Candida krusei (12 strains) by XTT [2,3-bis(2-methoxy-4-nitro-5-sulfophenyl)-2H-tetrazolium-5- carboxanilide] assay. Planktonic and biofilm MICs were defined as>50% fungal damage. Planktonic cells of all Candida species were susceptible to the three echinocandins, with MICs of≤1 mg/liter. By comparison, differences in the MIC profiles of biofilms in response to echinocandins existed among the Candida species. Thus, C. lusitaniae and C. guilliermondii biofilms were highly recalcitrant to all echinocandins, with MICs of ≥32 mg/ liter. In contrast, the MICs of all three echinocandins for C. albicans and C. krusei biofilms were relatively low (MICs ≤ 1 mg/ liter). While echinocandins exhibited generally high MICs against C. parapsilosis biofilms, MFG exhibited the lowest MICs against these isolates (4 mg/liter). A paradoxical growth effect was observed with CAS concentrations ranging from 8 to 64 mg/ liter against C. albicans and C. parapsilosis biofilms but not against C. krusei, C. lusitaniae, or C. guilliermondii. While nonalbicans Candida planktonic cells were susceptible to all echinocandins, there were drug- and species-specific differences in susceptibility among biofilms of the various Candida species, with C. lusitaniae and C. guilliermondii exhibiting profiles of high MICs of the three echinocandins.
机译:除白色念珠菌以外的念珠菌也越来越多地被认为是生物膜相关感染的原因。这是一项综合研究,比较了所有三种棘皮and苷对由不同的常见和不常鉴定的念珠菌分离物形成的生物膜的体外活性。我们确定了阿尼芬净(ANID),卡泊芬净(CAS)和米卡芬净(MFG)对抗浮游细胞和白色念珠菌(15株),副念珠菌(6株),卢西尼亚念珠菌(16株)血流分离物生物膜的活性。 ,古迪假丝酵母(5株)和克鲁斯假丝酵母(12株)通过XTT [2,3-双(2-甲氧基-4-硝基-5-磺基苯基)-2H-四唑-5-甲酰苯胺]测定。浮游生物和生物膜MIC被定义为> 50%的真菌损伤。所有念珠菌物种的浮游细胞均易受这三种棘球ins素的影响,MIC≤1mg / L。相比之下,假丝酵母​​菌对生物膜的MIC谱图响应棘球oc素存在差异。因此,卢希塔尼亚衣藻和居里氏梭状芽孢杆菌生物膜对所有棘霉素均具有高度抗性,MIC≥32 mg / L。相比之下,白色念珠菌和克鲁斯梭菌生物膜的所有三种棘球and素的MIC都相对较低(MIC≤1 mg / L)。尽管棘孢菌素对副寄生念珠菌生物膜表现出一般较高的MIC,而MFG对这些分离株表现出最低的MIC(4 mg / L)。当CAS浓度在8至64 mg / L的范围内时,对白色念珠菌和副念珠菌生物膜表现出反常的生长作用,而对克鲁斯念珠菌,卢西坦氏念珠菌或古氏念珠菌则没有观察到。非白色念珠菌的念珠菌浮游细胞对所有棘球and素均敏感,而不同念珠菌物种的生物膜之间在药敏性和物种特异性方面存在差异,其中,C。lusitaniae和C. guilliermondii表现出三种棘枝oc素的高MIC。

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