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Synergism between the antifungal agents amphotericin B and alkyl glycerol ethers.

机译:抗真菌剂两性霉素B和烷基甘油醚之间的协同作用。

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摘要

The alkyl glycerol ether rac-1-O-dodecylglycerol inhibited the growth of members of two genera of yeasts, Candida and Cryptococcus, and was strongly synergistic with amphotericin B. At one-half its MIC, dodecylglycerol decreased the MIC of amphotericin B by as much as 80-fold. This high degree of synergism between dodecylglycerol and amphotericin B was demonstrated against a number of species of yeasts including Candida albicans, Candida tropicalis, Candida parapsilosis, Cryptococcus neoformans, Cryptococcus albidus, and Cryptococcus laurentii. All fractional inhibitory concentrations (for all strains and species) were calculated to be less than 1, and most were less than 0.6, again demonstrating strong synergism. Other alkyl glycerol ethers with alkyl chain lengths ranging from 8 to 18 carbon atoms were also found to be synergistic with amphotericin B against C. neoformans and C. albicans. Electron microscopy experiments showed that C. neoformans grown in the presence of dodecylglycerol had severely abnormal, deformed capsules. Although the mechanism of action of dodecylglycerol is not known, dodecylglycerol was not simply acting as a detergent. The natural detergent sodium deoxycholate could not substitute for dodecylglycerol. At comparable and higher concentrations, sodium deoxycholate had no fungicidal effect on its own, nor did it potentiate the activity of amphotericin B. Dodecylglycerol did not interact synergistically with the water-soluble antifungal agent fluconazole. The lipid-soluble hydrophobic properties of amphotericin B appear to be important for this synergistic effect, in that alkyl glycerol ethers could promote synergism with amphotericin B by potentially increasing the interaction between membrane-bound ergosterol and amphotericin B.
机译:烷基甘油醚rac-1-O-十二烷基甘油抑制酵母的两个属念珠菌和隐球菌的生长,并且与两性霉素B具有强的协同作用。十二烷基甘油的半数MIC降低了两性霉素B的MIC高达80倍十二烷基甘油和两性霉素B之间的这种高度协同作用已被证明可对抗多种酵母,包括白色念珠菌,热带念珠菌,副念珠菌,新隐球菌,白隐球菌和劳伦隐球菌。计算出的所有抑制分数浓度(对于所有菌株和物种)均小于1,并且大多数均小于0.6,再次证明了强的协同作用。还发现其它烷基链长度为8至18个碳原子的烷基甘油醚与两性霉素B协同对抗新孢梭菌和白色念珠菌。电子显微镜实验表明,在十二烷基甘油存在下生长的新形成梭状芽胞杆菌具有严重异常,变形的胶囊。尽管十二烷基甘油的作用机理尚不清楚,但十二烷基甘油并非简单地用作洗涤剂。天然洗涤剂脱氧胆酸钠不能代替十二烷基甘油。在相当的浓度和更高的浓度下,脱氧胆酸钠本身没有杀真菌作用,也没有增强两性霉素B的活性。十二烷基甘油与水溶性抗真菌剂氟康唑没有协同作用。两性霉素B的脂溶性疏水特性对于这种协同作用似乎很重要,因为烷基甘油醚可以通过潜在地增加膜结合的麦角固醇和两性霉素B之间的相互作用来促进与两性霉素B的协同作用。

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