Soukup Ondrej, Dolezal Rafael, Malinak David, Marek Jan, Salajkova Sarka, Pasdiorova Marketa, Honegr Jan, Korabecny Jan, Nachtigal Petr, Nachon Florian, Jun Daniel, Kuca Kamil
Biomedical Research Centre, University Hospital Hradec Kralove, Sokolska 581, 500 05 Hradec Kralove, Czech Republic; Department of Toxicology and Military Pharmacy, Faculty of Military Health Sciences, University of Defence, Trebesska 1575, 500 01 Hradec Kralove, Czech Republic.
Biomedical Research Centre, University Hospital Hradec Kralove, Sokolska 581, 500 05 Hradec Kralove, Czech Republic; Center for Basic and Applied Research, Faculty of Informatics and Management, University of Hradec Kralove, Rokitanskeho 62, 500 03 Hradec Kralove, Czech Republic.
Bioorg Med Chem. 2016 Feb 15;24(4):841-8. doi: 10.1016/j.bmc.2016.01.006. Epub 2016 Jan 6.
In the present paper, we describe the synthesis of a new group of 5-hydroxyisoquinolinium salts with different lengths of alkyl side-chain (C10-C18), and their chromatographic analysis and biological assay for in vitro activity against bacterial and fungal strains. We compare the lipophilicity and efficacy of hydroxylated isoquinolinium salts with the previously published (non-hydroxylated) isoquinolinium salts from the point of view of antibacterial and antifungal versatility and cytotoxic safety. Compound 11 (C18) had to be excluded from the testing due to its low solubility. Compounds 9 and 10 (C14, C16) showed only moderate efficacy against G+ bacteria, notably with excellent potency against Staphyloccocus aureus, but no effect against G- bacteria. In contrast, non-hydroxylated isoquinolinium salts showed excellent antimicrobial efficacy within the whole series, particularly 14 (C14) against G+ strains and 15 (C16) against fungi. The electronic properties and desolvation energies of 5-hydroxyisoquinolinium and isoquinolinium salts were studied by quantum-chemistry calculations employing B3LYP/6-311++G(d,p) method and an implicit water-solvent simulation model (SCRF). Despite the positive mesomeric effect of the hydroxyl moiety reducing the electron density of the quaternary nitrogen, it is probably the higher lipophilicity and lower desolvation energy of isoquinolinium salts, which is responsible for enhanced antimicrobial versatility and efficacy.
在本论文中,我们描述了一组新的具有不同长度烷基侧链(C10 - C18)的5 - 羟基异喹啉鎓盐的合成,以及它们针对细菌和真菌菌株的体外活性的色谱分析和生物学测定。我们从抗菌和抗真菌的通用性以及细胞毒性安全性的角度,比较了羟基化异喹啉鎓盐与先前发表的(非羟基化)异喹啉鎓盐的亲脂性和功效。化合物11(C18)因其低溶解度而被排除在测试之外。化合物9和10(C14、C16)对革兰氏阳性菌仅表现出中等功效,对金黄色葡萄球菌有显著效力,但对革兰氏阴性菌无作用。相比之下,非羟基化异喹啉鎓盐在整个系列中显示出优异的抗菌功效,特别是14(C14)对革兰氏阳性菌株和15(C16)对真菌。采用B3LYP/6 - 311++G(d,p)方法和隐式水溶剂模拟模型(SCRF),通过量子化学计算研究了5 - 羟基异喹啉鎓盐和异喹啉鎓盐的电子性质和去溶剂化能。尽管羟基部分的正中介效应降低了季铵氮的电子密度,但可能是异喹啉鎓盐较高的亲脂性和较低的去溶剂化能导致了抗菌通用性和功效的增强。