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首页> 外文期刊>Journal of Oral Science >Singlet oxygen generated by a new nonthermal atmospheric pressure air plasma device exerts a bactericidal effect on oral pathogens
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Singlet oxygen generated by a new nonthermal atmospheric pressure air plasma device exerts a bactericidal effect on oral pathogens

机译:新型非热大气压空气等离子体装置产生的单重态氧对口腔病原体具有杀菌作用

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Oral diseases generally have certain bacteria associated with them. Non-thermal atmospheric pressure plasma (NTAP), generated at atmospheric pressure and room temperature, incorporates several molecules, including reactive oxygen species, that can inactivate various bacteria including oral pathogens. For this reason, several NTAP devices have been developed to treat oral diseases. Use of noble gases can enhance the bactericidal efficacy of NTAP, but this requires additional gas supply equipment. Therefore, a new NTAP device that employs ambient air as the working gas was developed. The device generates non-thermal atmospheric pressure air plasma. Here, the singlet oxygen (sup1/supOsub2/sub) levels generated, their bactericidal effects on oral pathogens ( Streptococcus mutans , Porphyromonas gingivalis , and Enterococcus faecalis ), and the bacterial oxidative stress they imposed were measured. sup1/supOsub2/sub generation in phosphatebuffered saline was assessed qualitatively using electron spin resonance (ESR) spectroscopy, and bactericidal efficacy was evaluated by counting of colony-forming units/mL. Bacterial oxidative stress was determined by measurement of hydrogen peroxide (Hsub2/subOsub2/sub) and superoxide dismutase (SOD) activity. ESR indicated that the level of sup1/supOsub2/sub increased significantly and time-dependently, and was inversely correlated with distance, but the bactericidal effects were correlated only with treatment time (not distance) as Hsub2/subOsub2 /subincreased and SOD levels decreased, suggesting that the new device has potential applicability for treatment of oral disease.
机译:口腔疾病通常与某些细菌有关。在大气压力和室温下产生的非热大气压力等离子体(NTAP)结合了多种分子,包括活性氧,可以使包括口腔病原体在内的各种细菌失活。因此,已经开发了几种NTAP设备来治疗口腔疾病。使用稀有气体可以增强NTAP的杀菌效果,但这需要额外的气体供应设备。因此,开发了一种使用环境空气作为工作气体的新型NTAP设备。该设备生成非热大气压空气等离子体。在这里,产生的单线态氧( 1 O 2 )水平,其对口腔病原体(变形链球菌,牙龈卟啉单胞菌和粪肠球菌)的杀菌作用以及细菌的氧化应激他们强加了测量。使用电子自旋共振(ESR)光谱定性评估了磷酸盐缓冲液中的 1 O 2 生成,并通过计算菌落形成单位/ mL评估了杀菌效力。通过测量过氧化氢(H 2 O 2 )和超氧化物歧化酶(SOD)的活性来确定细菌的氧化应激。 ESR表明, 1 O 2 的水平显着且随时间增加,并且与距离成反比,但杀菌效果仅与治疗时间(与距离无关)相关。 )随着H 2 O 2 的增加和SOD含量的降低,表明该新设备具有治疗口腔疾病的潜在适用性。

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