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Antibacterial activity of polyoxometalates against Moraxella catarrhalis

机译:多金属氧酸盐对卡他莫拉菌的抗菌活性

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The antibacterial activity of 29 different polyoxometalates (POMs) against Moraxella catarrhalis was investigated by determination of the minimum inhibitory concentration (MIC). The Preyssler type polyoxotungstate (POT) [NaP5W30O110]14? demonstrates the highest activity against M. catarrhalis (MIC = 1 μg/ml) among all tested POMs. Moreover, we show that the Dawson type based anions, [P2W18O62]6?, [(P2O7)Mo18O54]4?, [As2Mo18O62]6?, [H3P2W15V3O62]6? and [AsW18O60]7? are selective on M. catarrhalis (MIC range of 2–8 μg/ml). Among the six tested Keggin type based POTs ([PW12O40]3?, [H2PCoW11O40]5?, [H2CoTiW11O40]6?, [SiW10O36]8?, [SbW9O33]9?, [AsW9O33]9?), only the mono-substituted [H2CoTiW11O40]6? showed MIC value comparable to those of the Dawson type group. Polyoxovanadates (POVs) and Anderson type POMs were inactive against M. catarrhalis within the tested concentration range (1?256 μg/ml). Four Dawson type POMs [P2W18O62]6?, [(P2O7)Mo18O54]4?, [As2Mo18O62]6?, [H3P2W15V3O62]6? and the Preyssler POT [NaP5W30O110]14? showed promising antibacterial activity against M. catarrhalis (MICs < 8 μg/ml) and were therefore tested against three additional bacteria, namely S. aureus, E. faecalis and E. coli. The most potent antibacterial agent was [NaP5W30O110]14?, exhibiting the lowest MIC values of 16 μg/ml against S. aureus and 8 μg/ml against E. faecalis. The three most active compounds ([NaP5W30O110]14?, [P2W18O62]6? and [H3P2W15V3O62]6?) show bacteriostatic effects in killing kinetics study against M. catarrhalis. We demonstrate, that POM activity is mainly depending on composition, shape and size, but in the case of medium-size POTs (charge is more than –12 and number of addenda atoms is not being higher than 22) its activity correlates with the total net charge.
机译:通过确定最低抑菌浓度(MIC),研究了29种不同的多金属氧酸盐(POM)对卡他莫拉氏菌的抗菌活性。 Preyssler型聚氧钨酸盐(POT)[NaP5W30O110] 14?在所有测试的POM中显示出最高的抗卡他莫拉氏菌活性(MIC = 1μg/ ml)。此外,我们显示出基于Dawson型的阴离子,[P2W18O62] 6′,[(P2O7)Mo18O54] 4′,[As2Mo18O62] 6′,[H3P2W15V3O62] 6′。和[AsW18O60] 7?对卡他莫拉氏菌具有选择性(MIC范围为2–8μg/ ml)。在六个经过测试的基于Keggin类型的POT([PW12O40] 3?,[H2PCoW11O40] 5?,[H2CoTiW11O40] 6?,[SiW10O36] 8?,[SbW9O33] 9?,[AsW9O33] 9?)中,取代的[H2CoTiW11O40] 6?的MIC值可与Dawson型组的MIC值相媲美。在测试浓度范围(1?256μg/ ml)中,聚氧钒酸盐(POV)和安德森(Anderson)型聚甲醛对粘膜炎莫拉氏菌没有活性。四个Dawson型POM [P2W18O62] 6?,[(P2O7)Mo18O54] 4?,[As2Mo18O62] 6?,[H3P2W15V3O62] 6?和Preyssler POT [NaP5W30O110] 14?尼古丁对粘膜炎莫拉氏菌(MICs <8μg/ ml)表现出令人鼓舞的抗菌活性,因此对另外三种细菌,即金黄色葡萄球菌,粪肠杆菌和大肠杆菌进行了测试。最有效的抗菌剂是[NaP5W30O110]14α,对金黄色葡萄球菌的最低MIC值为16μg/ ml,对屎肠球菌的最低MIC为8μg/ ml。三种活性最高的化合物([NaP5W30O110] 14′,[P2W18O62] 6′和[H3P2W15V3O62] 6′)在针对卡他莫拉氏菌的杀灭动力学研究中显示出抑菌作用。我们证明,POM的活性主要取决于组成,形状和大小,但在中等大小的POT(电荷大于–12,附加原子数不大于22的情况)下,其活性与总POM相关。净费用。

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