112 JOURNAL OF COSMETIC SCIENCE (69) A. Varvaresou, S. Papageorgiou, E. Tsirivas, E. Protopapa, H. Kintziou, V. Kefala, C. Demetzos, Self- preserving cosmetics. Int. J. Cosmet. Sci., 31(3), 163–175 (2009). (70) O. Atolani, M. T. Baker, O. S. Adeyemi, I. R. Olanrewaju, A. A. Hamid, O. M. Ameen, S. O. Oguntoye, and L. A. Usman, COVID-19: Critical discussion on the applications and implications of chemicals in sanitizers and disinfectants. Excli J., 19, 785–799 (2020). (71) A. Nostro, M. A. Cannatelli, I. Morelli, A. D. Musolino, F. Scuderi, F. Pizzimenti, V. Alonzo, Efficiency of Calamintha officinalis essential oil as preservative in two topical product types. J. Appl. Microbiol., 97(2), 395–401 (2004). (72) A. Carbone-Howell, N. Stebbins, and K. Uhrich, Poly (anhydride-esters) comprised exclusively of naturally occurring antimicrobials and EDTA: antioxidant and antibacterial activities. Biomacromol., 15, 1889–1895 (2014). (73) O. B. Hughes, A. D. Maderal, and A. Tosti, Preservative sensitization—safety with and safety without. Curr. Treat Options Allergy., 3(4), 345–358 (2016). (74) P. Orús, L. Gomez-Perez, S. Leranoz, and M. Berlanga, Increasing antibiotic resistance in preservative- tolerant bacterial strains isolated from cosmetic products. Int. Microbiol., 18(1), 51–59 (2015). (75) K. Schmidlin, S. Sani, D. I. Bernstein, and L. Fonacier, A hands-on approach to contact dermatitis and patch testing. J. Allergy Clin. Immunol. Pract., 8(6), 1883–1893 (2020). (76) E. Yim, K. L. Baquerizo Nole, and A. Tosti, Contact dermatitis caused by preservatives. Dermatitis. 25(5), 215–231 (2014). (77) J. G. DeKoven, E. M. Warshaw, K. A. Zug, H. I. Maibach, D. V. Belsito, D. Sasseville, J. S. Taylor, J. F. Fowler, Jr., C. G. T. Mathias, J. G. Marks, M. D. Pratt, M. J. Zirwas, and V. A. DeLeo, North American contact dermatitis group patch test results: 2015–2016. Dermatitis. 29(6), 297–309 (2018). (78) J. G. DeKoven, E. M. Warshaw, D. V. Belsito, D. Sasseville, H. I. Maibach, J. S. Taylor, D. Sasseville, J. F. Fowler, C. G. T. Mathias, V. A. DeLeo, M. D. Pratt, J. G. Marks, and A. F. Fransway. North American contact dermatitis group patch test results 2013–2014. Dermatitis. 28(1), 33–46 (2017). (79) D. Donà, C. Di Chiara, and M. Sharland, Multi-drug-resistant infections in the COVID-19 era: a framework for considering the potential impact. J. Hosp. Infect., 106(1), 198–199 (2020). (80) H. Getahun, I. Smith, K. Trivedi, S. Paulin, and H. H. Balkhy, Tackling antimicrobial resistance in the COVID-19 pandemic. Bull. World Health Organ., 98(7), 442–442A (2020). (81) A. K. Murray, The novel coronavirus COVID-19 outbreak: Global implications for antimicrobial resistance. Front Microbiol., 11, 1020 (2020). (82) S. Kampmeier, H. Tönnies, C. L. Correa-Martinez, A. Mellmann, and V. Schwierzeck, A nosocomial cluster of vancomycin resistant enterococci among COVID-19 patients in an intensive care unit. Antimicrob. Resist Infect. Control, 9(1), 154 (2020). (83) A. Mahmood, M. Eqan, S. Pervez, H. A. Alghamdi, A. B. Tabinda, A. Yasar, K. Brindadevi, and A. Pugazhendhi, COVID-19 and frequent use of hand sanitizers human health and environmental hazards by exposure pathways. Sci. Total Environ., 742, 140561 (2020). (84) P. Nori, W. Szymczak, Y. Puius, A. Sharma, K. Cowman, P. Gialanella, M. Corpuz, I. Gendlina, and Y. Guo, Emerging co-pathogens: New Delhi metallo-beta-lactamase producing enterobacterales infections in New York City COVID-19 patients. Int. J. Antimicrob. Agents, 56(6), 106179 (2020). (85) A. D. Porretta, A. Baggiani, G. Arzilli, V. Casigliani, T. Mariotti, F. Mariottini, G. Scardina, D. Sironi, M. Totaro, S. Barnini, and G. P. Privitera, Increased risk of acquisition of New Delhi metallo-beta- lactamase-producing carbapenem-resistant enterobacterales (NDM-CRE) among a cohort of COVID-19 patients in a teaching hospital in Tuscany, Italy. Pathogens. 9(8), 1–4 (2020). (86) B. Tiri, E. Sensi, V. Marsiliani, M. Cantarini, G. Priante, C. Vernelli, L. A. Martella, M. Costantini, A. Mariottini, P. Andreani, P. Bruzzone, F. Suadoni, M. Francucci, R. Cirocchi, and S. Cappanera, Antimicrobial stewardship program, COVID-19, and infection control: spread of carbapenem-resistant klebsiella pneumoniae colonization in ICU COVID-19 patients. What did not work? J. Clin. Med., 9(9), 1–8 (2020).
113 PRESERVATION OF PERSONAL CARE AND COSMETIC PRODUCTS (87) J. A. Bengoechea and C. G. Bamford, SARS-CoV-2, bacterial co-infections, and AMR: the deadly trio in COVID-19? EMBO Mol. Med., 12(7), e12560 (2020). (88) D. L. Monnet and S. Harbarth, Will coronavirus disease (COVID-19) have an impact on antimicrobial resistance? Euro. Surveill., 25(45), 1–6 (2020). (89) J. Y. Maillard, Mechanisms of bacterial resistance to microbicides. 2013 [cited 2021 Mar 25]. Available from: https://onlinelibrary.wiley.com/doi/abs/10.1002/9781118425831.ch6a. In: Hugo: Russell &Ayliffe’s [Internet]. Hoboken, NJ, USA: John Wiley &Sons, Ltd. p. 108–120. (90) C. B. Giacomel, G. Dartora, H. S. Dienfethaeler, and S. E. Haas, Investigation on the use of expired make-up and microbiological contamination of mascaras. Int. J. Cosmet. Sci., 35(4), 375–380 (2013). (91) M. Saeb-Lima, G. V. Solis-Arreola, and A. Fernandez-Flores, Mycobacterial infection after cosmetic procedure with botulinum toxin a. J. Clin. Diagn. Res., 9(4), WD01–WD02 (2015). (92) G. McDonnell and A. D. Russell, Antiseptics and disinfectants: Activity, action, and resistance. Clin. Microbiol. Rev., 12(1), 147–179 (1999). (93) W. C. Reygaert, An overview of the antimicrobial resistance mechanisms of bacteria. AIMS Microbiol., 4(3), 482–501 (2018). (94) P. Moka, P. Goswami, A. Kapil, I. Xess, V. Sreenivas, and A. Saraya, Impact of antibiotic-resistant bacterial and fungal infections in outcome of acute pancreatitis. Pancreas., 47(4), 489–494 (2018). (95) R. R. Hector, Compounds active against cell walls of medically important fungi. Clin. Microbiol. Rev., 6(1), 1–21 (1993). (96) W. B. Hugo, The degradation of preservatives by microorganisms. Int. Biodeterior., 27(2), 185–94 (1991). (97) A. Davin-Regli, R. Chollet, J. Bredin, J. Chevalier, F. Lepine, and J. Pagès, Enterobacter gergoviae and the prevalence of efflux in parabens resistance. J. Antimicrob. Chemother., 57(4 ),757–760 (2006). (98) A. Amin, S. Chauhan, M. Dare, and A. Bansal, Degradation of parabens by Pseudomonas beteli and Burkholderia latens. Eur. J. Pharm. Biopharm., 75(2), 206–212 (2010). (99) J. S. Chapman, Characterizing bacterial resistance to preservatives and disinfectants. Int. Biodeterior. Biodegrad, 41(3–4), 241–245 (1998). (100) P. S. Boeris, C. E. Domenech, and G. I. Lucchesi, Modification of phospholipid composition in pseudomonas putida A ATCC 12633 induced by contact with tetradecyltrimethylammonium, J. Appl. Microbiol., 103(4), 1048–1054 (2007).
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