The bactericidal effect of 470-nm light and hyperbaric oxygen on methicillin-resistant Staphylococcus aureus (MRSA)

被引:0
作者
Violet Vakunseh Bumah
Harry Thomas Whelan
Daniela Santos Masson-Meyers
Brendan Quirk
Ellen Buchmann
Chukuka Samuel Enwemeka
机构
[1] University of Wisconsin-Milwaukee,College of Health Sciences
[2] Medical College of Wisconsin,Department of Neurology
[3] San Diego State University,undefined
来源
Lasers in Medical Science | 2015年 / 30卷
关键词
Methicillin-resistant ; Hyperbaric oxygen therapy; Antimicrobial activity; Phototherapy; Low-level light therapy; Blue light;
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摘要
It has been shown that, in vitro, hyperbaric oxygen (HBO) suppresses 28 % bacterial growth, while 470-nm blue light alone suppresses up to 92 % methicillin-resistant Staphylococcus aureus (MRSA) in one application in vitro. Therefore, we determined if combined 470-nm light (55 J/cm2) and HBO will yield 100 % bacterial suppression in experimental simulation of mild, moderate or severe MRSA infection. We cultured MRSA at 3 × 106, 5 × 106, 7 × 106, 8 × 106, or 12 × 106 CFU/ml and treated each concentration in four groups as follows: (1) control (no treatment) (2) photo-irradiation only, (3) photo-irradiation then HBO, (4) HBO only, and (5) HBO then photo-irradiation. Bacteria colonies were then quantified. The results showed that at each bacterial concentration, HBO alone was significantly less effective in suppressing MRSA than photo-irradiation or combined HBO and photo-irradiation (p < 0.0001). Similarly, at no bacterial concentration did combined HBO and 470-nm light treatment yield a statistically better result than 470-nm light alone (p > 0.05), neither did HBO treatment either before or after irradiation make a difference. Furthermore, at no bacterial concentration was 100 % MRSA suppression achieved. Indeed, the maximum bacterial suppression attained was in the mild infection model (3 × 106 CFU/ml), with blue light producing 97.3 ± 0.2 % suppression and HBO + 55 J/cm2 yielding 97.5 ± 2.5 % suppression. We conclude that (1) HBO and 470-nm light individually suppress MRSA growth; (2) 470-nm blue light is more effective in suppressing MRSA than HBO; and (3) HBO did not act synergistically to heighten the bactericidal effect of 470-nm light.
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页码:1153 / 1159
页数:6
相关论文
共 186 条
[1]  
Okuma K(2002)Dissemination of new methicillin-resistant J Clin Microbiol 40 4289-4294
[2]  
Iwakawa K(2006) clones in communities Ann Intern Med 144 368-370
[3]  
Turnidge JD(2000)The growing menace of community-acquired methicillin-resistant Am J Infect Control 28 465-471
[4]  
Grubb WB(2006)Computer keyboards and faucet handles as reservoirs of nosocomial pathogens in the intensive care unit Ann Intern Med 144 318-325
[5]  
Bell JM(2007)A US population-based survey of JAMA 298 1763-1771
[6]  
O'Brien FG(2008) colonization Trends Microbiol 16 361-369
[7]  
Coombs GW(2011)Methicillin-resistant BMC Pediatr 11 96-6
[8]  
Pearman JW(2014) infections in the United States Western Pac Surveill Response J 5 1-3
[9]  
Tenover FC(2013)The role of virulence determinants in community-associated MRSA pathogenesis Photomed Laser Surg 31 1-737
[10]  
Kapi M(2008)Higher incidence of perineal community acquired MRSA infections among toddlers Lasers Surg Med 40 734-226