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High frequency equipment promotes antibacterial effects dependent on intensity and exposure time

机译:高频设备根据强度和暴露时间促进抗菌作用

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Background: The indiscriminate use of antibiotics has caused bacteria to develop mechanisms of resistance to antibacterial agents, limiting treatment options. Therefore, there is a great need for alternative methods to control infections, especially those related to skin. One of the alternative methods is the high frequency equipment (HFE), which is used on skin conditions as an analgesic, an anti-inflammatory, and mainly to accelerate cicatricial processes and have a bactericidal effect through the formation of ozone. This research investigated the antibacterial effect of HFE on standard cultures of bacteria. Materials and methods: Dilutions (104 colony forming unit mL?1) were performed for Enterobacter aerogenes and Staphylococcus aureus with 24-hour growth bacteria. Then, 1 μL of each dilution was pipetted into suitable medium and the HFE flashing technique was used at intensities of 6, 8 and 10 mA for 30, 60, 90, 120 and 180 seconds. The control group received no treatment. Plates were incubated at 37°C for 24 hours and then read. Results: The spark at intensity of 6 mA had no bactericidal effect on the E. aerogenes ; however, a significant bacterial growth reduction occurred at intensity of 8 mA after 120 and 180 seconds, and at 10 mA, reduction in bacterial growth could already be verified at 30 seconds and total bacterial growth inhibition occurred in 180 seconds. For S. aureus , there was a strong bacterial growth inhibition at all intensities used; however, at 6 mA, absence of bacterium growth after 120 and 180 seconds was observed. By increasing the flashing intensity to 8 and 10 mA, it was observed that the bacterium growth was inhibited after only 30 seconds of irradiation. Conclusion: The HFE has time-dependent antibacterial effects against E. aerogenes and S.?aureus bacteria that have several resistance mechanisms.
机译:背景:滥用抗生素已导致细菌形成对抗菌剂的耐药机制,从而限制了治疗选择。因此,非常需要替代方法来控制感染,尤其是与皮肤有关的感染。一种替代方法是高频设备(HFE),该设备在皮肤条件下用作镇痛剂,消炎剂,主要用于加速瘢痕形成过程,并通过形成臭氧而具有杀菌作用。这项研究调查了HFE对标准细菌培养的抗菌作用。材料与方法:用24小时生长细菌稀释产气肠杆菌和金黄色葡萄球菌(10 4 菌落形成单位mL ?1 )。然后,将每种稀释液1μL移入合适的培养基中,并以6、8和10 mA的强度使用HFE闪蒸技术处理30、60、90、120和180秒。对照组未接受治疗。将板在37℃下孵育24小时,然后读取。结果:强度为6 mA的火花对产气大肠杆菌没有杀菌作用。但是,在120和180秒后强度为8 mA时,细菌的生长显着减少,而在10 mA时,已经在30秒时证实了细菌生长的减少,而在180秒中发生了总细菌生长的抑制。对于金黄色葡萄球菌,在所有使用强度下都具有很强的细菌生长抑制作用。然而,在6mA下,在120秒和180秒后观察不到细菌生长。通过将闪烁强度增加至8和10mA,观察到仅照射30秒后细菌生长受到抑制。结论:HFE对产气链球菌和金黄色葡萄球菌具有时间依赖性的抗菌作用,具有多种耐药机制。

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