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Effective Photodynamic Inactivation of 26 E coli Strains

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Effective Photodynamic Inactivation of 26 E coli Strains ( effective-photodynamic-inactivation-26-e-coli-strains )

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Antibiotics 2020, 9, 98 11 of 12 18. Floyd, R.A.; Schneider, J.E., Jr.; Dittmer, D.P. Methylene blue photoinactivation of RNA viruses. Antiviral Res. 2004, 61, 141–151. [CrossRef] 19. Tegos, G.P.; Masago, K.; Aziz, F.; Higginbotham, A.; Stermitz, F.R.; Hamblin, M.R. Inhibitors of bacterial multidrug efflux pumps potentiate antimicrobial photoinactivation. Antimicrob. Agents Chemother. 2008, 52, 3202–3209. [CrossRef] 20. Grinholc, M.; Rapacka-Zdonczyk, A.; Rybak, B.; Szabados, F.; Bielawski, K.P. Multiresistant strains are as susceptible to photodynamic inactivation as their naïve counterparts: Protoporphyrin IX-mediated photoinactivation reveals differences between methicillin-resistant and methicillin-sensitive Staphylococcus aureus strains. Photomed. Laser Surg. 2014, 32, 121–129. [CrossRef] 21. Caires, C.S.A.; Leal, C.R.B.; Rodrigues, A.C.S.; Lima, A.R.; Silva, C.M.; Ramos, C.A.N.; Chang, M.R.; Arruda, E.J.; Oliveira, S.L.; Nascimento, V.A.; et al. Photoinactivation of mcr-1 positive Escherichia coli. Laser Phys. Lett. 2018, 15. [CrossRef] 22. Wilson, M.; Yianni, C. Killing of methicillin-resistant Staphylococcus aureus by low-power laser light. J. Med. Microbiol. 1995, 42, 62–66. [CrossRef] [PubMed] 23. Soncin, M.; Fabris, C.; Busetti, A.; Dei, D.; Nistri, D.; Roncucci, G.; Jori, G. Approaches to selectivity in the Zn(II)-phthalocyanine-photosensitized inactivation of wild-type and antibiotic-resistant Staphylococcus aureus. Photochem. Photobiol. 2002, 10, 815–819. [CrossRef] 24. Tang, H.M.; Hamblin, M.R.; Yow, C.M. A comparative in vitro photoinactivation study of clinical isolates of multidrug-resistant pathogens. J. Infect. Chemother. 2007, 13, 87–91. [CrossRef] [PubMed] 25. Maisch, T. A new strategy to destroy antibiotic resistant microorganisms: Antimicrobial photodynamic treatment. Mini Rev. Med. Chem. 2009, 9, 974–983. [CrossRef] [PubMed] 26. Grinholc, M.; Szramka, B.; Kurlenda, J.; Graczyk, A.; Bielawski, K.P. Bactericidal effect of photodynamic inactivation against methicillin-resistant and methicillin-susceptible Staphylococcus aureus is strain-dependent. J. Photochem. Photobiol. B 2008, 90, 57–63. [CrossRef] 27. Parente, T.M.A.L.; Rebouças, E.L.; dos Santos, V.C.V.; Barbosa, F.C.B.; Zaninc, I.C.J. Serratia marcescens resistance profile and its susceptibility to photodynamic antimicrobial chemotherapy. Photodiagnosis Photodyn. Ther. 2016, 14, 185–190. [CrossRef] 28. Magiorakos, A.P.; Srinivasan, A.; Carey, R.B.; Carmeli, Y.; Falagas, M.E.; Giske, C.G.; Harbarth, S.; Hindler, J.F.; Kahlmeter, G.; Olsson-Liljequist, B.; et al. Multidrug-resistant, extensively drug-resistant and pandrug-resistant bacteria: An international expert proposal for interim standard definitions for acquired resistance. Clin. Microbiol. Infect. 2012, 18, 268–281. [CrossRef] 29. Boyce, J.M.; Pittet, D. Guideline for hand hygiene in health-care settings: Recommendations of the Healthcare Infection Control Practices Advisory Committee and the HICPAC/SHEA/APIC/IDSA hand hygiene task force. Infect. Control Hosp. Epidemiol. 2002, 23, S3–S40. [CrossRef] 30. Planas, O.; Bresolí-Obach, R.; Nos, J.; Gallavardin, T.; Ruiz-González, R.; Agut, M.; Nonell, S. Synthesis, photophysical characterization, and photoinduced antibacterial activity of Methylene Blue-loaded amino- and mannose-targeted mesoporous silica nanoparticles. Molecules 2015, 20, 6284–6298. [CrossRef] 31. Kashef, N.; Ravaei, S.A.G.; Djavid, G.E. Phototoxicity of phenothiazinium dyes against methicillin-resistant Staphylococcus aureus and multi-drug resistant Escherichia coli. Photodiagnosis Photodyn. Ther. 2012, 9, 11–15. [CrossRef] 32. Garcez, A.S.; Núñez, S.C.; Baptista, M.S.; Daghastanli, N.A.; Itri, R.; Hamblin, M.R.; Ribeiro, M.S. Antimicrobial mechanisms behind photodynamic effect in the presence of hydrogen peroxide. Photochem. Photobiol. Sci. 2011, 10, 483–490. [CrossRef] 33. George, S.; Hamblin, M.R.; Kishen, A. Uptake pathways of anionic and cationic photosensitizers into bacteria. Photochem. Photobiol. Sci. 2009, 8, 788–795. [CrossRef] [PubMed] 34. Tegos, G.P.; Hamblin, M.R. Phenothiazinium antimicrobial photosensitizers are substrates of bacterial multidrug resistance pumps. Antimicrob. Agents Chemother. 2006, 50, 196–203. [CrossRef] [PubMed] 35. Rineh, A.; Dolla, N.K.; Ball, A.R.; Magana, M.; Bremner, J.B.; Hamblin, M.R.; Tegos, G.P.; Kelso, M.J. Attaching the NorA efflux pump inhibitor INF55 to Methylene Blue enhances antimicrobial photodynamic inactivation of methicillin-resistant Staphylococcus aureus in vitro and in vivo. ACS Infect Dis. 2017, 3, 756–766. [CrossRef] [PubMed] 36. McDermott, P.F.; Walker, R.D.; White, D.G. Antimicrobials: Modes of action and mechanisms of resistance. Int. J. Toxicol. 2003, 22, 135–143. [CrossRef]

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