Shrestha Sanjib K, Fosso Marina Y, Green Keith D, Garneau-Tsodikova Sylvie
Department of Pharmaceutical Sciences, University of Kentucky, Lexington, Kentucky, USA.
Department of Pharmaceutical Sciences, University of Kentucky, Lexington, Kentucky, USA
Antimicrob Agents Chemother. 2015 Aug;59(8):4861-9. doi: 10.1128/AAC.00229-15. Epub 2015 Jun 1.
In this study, we investigated the in vitro antifungal activities, cytotoxicities, and membrane-disruptive actions of amphiphilic tobramycin (TOB) analogues. The antifungal activities were established by determination of MIC values and in time-kill studies. Cytotoxicity was evaluated in mammalian cell lines. The fungal membrane-disruptive action of these analogues was studied by using the membrane-impermeable dye propidium iodide. TOB analogues bearing a linear alkyl chain at their 6″-position in a thioether linkage exhibited chain length-dependent antifungal activities. Analogues with C12 and C14 chains showed promising antifungal activities against tested fungal strains, with MIC values ranging from 1.95 to 62.5 mg/liter and 1.95 to 7.8 mg/liter, respectively. However, C4, C6, and C8 TOB analogues and TOB itself exhibited little to no antifungal activity. Fifty percent inhibitory concentrations (IC50s) for the most potent TOB analogues (C12 and C14) against A549 and Beas 2B cells were 4- to 64-fold and 32- to 64-fold higher, respectively, than their antifungal MIC values against various fungi. Unlike conventional aminoglycoside antibiotics, TOB analogues with alkyl chain lengths of C12 and C14 appear to inhibit fungi by inducing apoptosis and disrupting the fungal membrane as a novel mechanism of action. Amphiphilic TOB analogues showed broad-spectrum antifungal activities with minimal mammalian cell cytotoxicity. This study provides novel lead compounds for the development of antifungal drugs.
在本研究中,我们调查了两亲性妥布霉素(TOB)类似物的体外抗真菌活性、细胞毒性和膜破坏作用。通过测定MIC值和进行时间杀菌研究来确定抗真菌活性。在哺乳动物细胞系中评估细胞毒性。使用膜不透性染料碘化丙啶研究了这些类似物对真菌膜的破坏作用。在其6″位带有硫醚键线性烷基链的TOB类似物表现出链长依赖性抗真菌活性。具有C12和C14链的类似物对测试的真菌菌株显示出有前景的抗真菌活性,MIC值分别为1.95至62.5毫克/升和1.95至7.8毫克/升。然而,C4、C6和C8的TOB类似物以及TOB本身几乎没有抗真菌活性。最有效的TOB类似物(C12和C14)对A549和Beas 2B细胞的50%抑制浓度(IC50)分别比它们对各种真菌的抗真菌MIC值高4至64倍和32至64倍。与传统氨基糖苷类抗生素不同,烷基链长度为C12和C14的TOB类似物似乎通过诱导凋亡和破坏真菌膜作为一种新的作用机制来抑制真菌。两亲性TOB类似物显示出广谱抗真菌活性,对哺乳动物细胞的细胞毒性最小。本研究为抗真菌药物的开发提供了新的先导化合物。