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Augmentation of antibiotic activity by low-frequency electric and electromagnetic fields examining Staphylococcus aureus in broth media?

机译:低频电场和电磁场增强肉汤培养基中金黄色葡萄球菌的抗菌活性?

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Systemic treatment of biomaterial-associated bacterial infections with high doses of antibiotics is an established therapeutic concept. The purpose of this in vitro study was to determine the influence of magnetic, electromagnetic, and electric fields on gentamicin-based, antibiotic therapy. It has been previously reported that these fields are successful in the treatment of bone healing and reducing osteitis in infected tibia-pseudarthroses. Four separate experimental setups were used to expose bacterial cultures of Staphylococcus aureus both in Mueller-Hinton broth (MHB) and on Mueller-Hinton agar (MHA), in the presence of gentamicin, to (1) a low-frequency magnetic field (MF) 20?Hz, 5?mT; (2) a low-frequency MF combined with an additional alternating electric field (MF?+?EF) 20?Hz, 5?mT, 470?mV/cm; (3) a sinusoidal alternating electric field (EF AC) 20?Hz, 470?mV/cm; and (4) a direct current electric field (EF DC) 588?mV/cm. No significant difference between samples and controls was detected on MHA. However, in MHB each of the four fields applied showed a significant growth reduction of planktonically grown Staphylococcus aureus in the presence of gentamicin between 32% and 91% within 24?h of the experiment. The best results were obtained by a direct current EF, decreasing colony-forming units (CFU)/ml more than 91%. The application of electromagnetic fields in the area of implant and bone infections could offer new perspectives in antibiotic treatment and antimicrobial chemotherapy. Bioelectromagnetics 32:367–377, 2011. ? 2011 Wiley-Liss, Inc.
机译:用高剂量的抗生素对生物材料相关细菌感染进行全身治疗是已确立的治疗概念。这项体外研究的目的是确定磁场,电磁场和电场对基于庆大霉素的抗生素治疗的影响。先前已经报道过,这些领域在治疗感染的胫骨假正骨中的骨愈合和减少骨炎方面是成功的。在庆大霉素存在的情况下,使用四个单独的实验装置将金黄色葡萄球菌在Mueller-Hinton肉汤(MHB)和Mueller-Hinton琼脂(MHA)上的细菌培养物暴露于(1)低频磁场(MF )20?Hz,5?mT; (2)低频MF与附加的交变电场(MF2 +ΔEF)相结合,频率为20Hz,5μmT,470μmV/ cm。 (3)正弦交流电场(EF AC)20?Hz,470?mV / cm; (4)直流电场(EF DC)588?mV / cm。在MHA上检测到的样品与对照之间没有显着差异。然而,在MHB中,在庆大霉素的存在下,在实验的24小时内,应用的四个场均显示出浮游植物生长的金黄色葡萄球菌的生长显着减少,介于32%和91%之间。通过直流电EF可获得最好的结果,将菌落形成单位(CFU)/ ml降低了91%以上。电磁场在植入物和骨感染领域的应用可以为抗生素治疗和抗菌化学治疗提供新的视角。生物电磁学32:367–377,2011年。 2011年Wiley-Liss,Inc.

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