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Viricidal treatments for prevention of coronavirus infection

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References

  • Cheng VCC, Lau SKP, Woo PCY, et al. Severe acute respiratory syndrome coronavirus as an agent of emerging and reemerging infection. Clin Microbiol Rev. 2007;20(4):660–694.
  • Coronaviridae Study Group of the International Committee on Taxonomy of Viruses. The species Severe acute respiratory syndrome-related coronavirus: classifying 2019-nCoV and naming it SARS-CoV-2. Nat Microbiol. 2020;5(4): 536–544. .
  • Lefkowitz EJ, Dempsey DM, Hendrickson RC, et al. Virus taxonomy: the database of the International committee on taxonomy of viruses (ICTV). Nucleic Acids Res. 2018;46(D1):D708–D717.
  • Fauci AS, Lane HC, Redfield RR. Covid-19—Navigating the Uncharted. N Engl J Med. 2020;382(13):1268–1269.
  • Guo Y-R, Cao Q-D, Hong Z-S, et al. The origin, transmission and clinical therapies on coronavirus disease 2019 (COVID-19) outbreak – an update on the status. Mil Med Res. 2020;7(1). DOI:10.1186/s40779-020-00240-0
  • Zhang S, Tuo J, Huang X, et al. Epidemiology characteristics of human coronaviruses in patients with respiratory infection symptoms and phylogenetic analysis of HCoV-OC43 during 2010-2015 in Guangzhou. Plos One. 2018;13(1):e0191789.
  • Millet JK, Nal B. Investigation of the functional roles of host cell proteins involved in coronavirus infection using highly specific and scalable RNA Interference (RNAi) approach. Maier HJ, Bickerton E, Britton P, editors.Coronaviruses; 2015. p. 231–240. Springer Science+Business Media New York. 10.1007/978-1-4939-2438-7_19
  • Chen N, Zhou M, Dong X, et al. Epidemiological and clinical characteristics of 99 cases of 2019 novel coronavirus pneumonia in Wuhan, China: A descriptive study. Lancet. 2020;395(10223):507–513.
  • Li W, Hulswit RJG, Kenney SP, et al. Broad receptor engagement of an emerging global coronavirus may potentiate its diverse cross-species transmissibility. Proc Nat Acad Sci. 2018;115(22):E5135–E5143.
  • Chae C, Kim O, Choi C, et al. Prevalence of porcine epidemic diarrhoea virus and transmissible gastroenteritis virus infection in Korean pigs. Vet Rec. 2000;147(21):606–608.
  • Song X, Zhao X, Huang Y, et al. Transmissible Gastroenteritis Virus (TGEV) Infection Alters the Expression of Cellular MicroRNA Species That Affect Transcription of TGEV Gene 7. Int J Biol Sci. 2015;11(8):913–922.
  • Ong SWX, Tan YK, Chia PY, et al. Air, surface environmental, and personal protective equipment contamination by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) from a symptomatic patient. JAMA. 2020;323(16):1610.
  • Ijaz MK, Brunner AH, Sattar SA, et al. Survival characteristics of airborne human coronavirus 229E. J Gen Virol. 1985;66(12):2743–2748.
  • Kampf G, Todt D, Pfaender S, et al. Persistence of coronaviruses on inanimate surfaces and their inactivation with biocidal agents. J Hosp Infect. 2020;104(3):246–251.
  • Desai AN, Aronoff DM. Food Safety and COVID-19. JAMA. 2020;323(19):1982.
  • van Doremalen N, Bushmaker T, Morris DH, et al. Aerosol and Surface Stability of SARS-CoV-2 as Compared with SARS-CoV-1. N Engl J Med. 2020;382(16):1564–1567.
  • Young BE, Ong SWX, Kalimuddin S, et al., for the Singapore 2019 Novel Coronavirus Outbreak Research Team. 2020. Epidemiologic features and clinical course of patients infected with SARS-CoV-2 in Singapore. JAMA. 323(15): 1488. https://doi.org/10.1001/jama.2020.3204 10.1001/jama.2020.3204
  • Lu J, Gu J, Li K, et al. COVID-19 outbreak associated with air conditioning in restaurant, Guangzhou, China, 2020. Emerg Infect Dis. 2020 Jul;26(7): 1628–1631. https://doi.org/10.3201/eid2607.200764 10.3201/eid2607.200764
  • Dellanno C, Vega Q, Boesenberg D. The antiviral action of common household disinfectants and antiseptics against murine hepatitis virus, a potential surrogate for SARS coronavirus. Am J Infect Control. 2009;37(8):649–652.
  • Geller C, Varbanov M, Duval RE. Human coronaviruses: insights into environmental resistance and its influence on the development of new antiseptic strategies. Viruses. 2012;4(11):3044–3068.
  • Chin AW, Chu JT, Perera MR, et al. Stability of SARS-CoV-2 in different environmental conditions. Lancet Microbe. 2020. DOI:10.1016/S2666-5247(20)30003-3.
  • Ascenzi JM, Ed. Handbook of disinfectants and antiseptics. New York: M. Dekker; 1996.
  • Kamm O. The relation between structure and physiological action of the alcohols**read before the detroit branch of the american pharmaceutical association decemher 1920. J Am Pharm Assoc. 1921;10(2):87–89.
  • Rutala WA. Guideline for Disinfection and Sterilization in Healthcare Facilities. 2008;2008:163. https://www.cdc.gov/infectioncontrol/guidelines/disinfection/
  • Kariwa H, Fujii N, Takashima I. Inactivation of SARS coronavirus by means of povidone-iodine, physical conditions and chemical reagents. Dermatology. 2006;212(1):119–123.
  • Rabenau HF, Kampf G, Cinatl J, et al. Efficacy of various disinfectants against SARS coronavirus. J Hosp Infect. 2005;61(2):107–111.
  • Kratzel A, Todt D, V’kovski P, et al. Inactivation of severe acute respiratory syndrome coronavirus 2 by WHO-ols. Emerg Infect Dis. 2020;26(7):1592–1595. .
  • Kaiser N, Klein D, Karanja P, et al. Inactivation of chlorhexidine gluconate on skin by incompatible alcohol hand sanitizing gels. Am J Infect Control. 2009;37(7):569–573.
  • C-Praktikum IO. Oxidations- und Reduktions-Reaktionen. n.d.. p. 38. Lehman Media LOB. de.
  • Payne JW. Polymerization of proteins with glutaraldehyde. Soluble molecular-weight markers. Biochem J. 1973;135(4):867–873.
  • Amsterdam D, Ed. Antibiotics in laboratory medicine (Sixth edition). Philadelphia: Wolters Kluwer; 2015.
  • Chambon M, Jallat-Archimbaud C, Bailly JL, et al. Comparative sensitivities of Sabin and Mahoney poliovirus type 1 prototype strains and two recent isolates to low concentrations of glutaraldehyde. Appl Environ Microbiol. 1997;63(8):3199–3204.
  • Howard CR, Dixon J, Young P, et al. Chemical inactivation of hepatitis B virus: the effect of disinfectants on virus-associated DNA polymerase activity, morphology and infectivity. J Virol Methods. 1983;7(3):135–148.
  • Rabenau HF, Cinatl J, Morgenstern B, et al. Stability and inactivation of SARS coronavirus. Med Microbiol Immunol. 2005;194(1–2):1–6.
  • Pratelli A. Canine coronavirus inactivation with physical and chemical agents. Vet J. 2008;177(1):71–79.
  • Saknimit M, Inatsuki I, Sugiyama Y, et al. Virucidal Efficacy of Physico-chemical Treatments Against Coronaviruses and Parvoviruses of Laboratory Animals. Exp Anim. 1988;37(3):341–345.
  • European Centre for Disease Prevention and Control. Interim guidance for environmental cleaning in non-healthcare facilities exposed to SARS-CoV-2. Stockholm: ECDC; 2020.
  • Eslami ARD. Antimicrobial assay of chlorhexidine-wetted textile napkins for surgical site disinfection in ocular surgery. Int J Clin Med. 2013;04(12):577–581.
  • Boyce JM, Pittet D, Healthcare Infection Control Practices Advisory Committee, & HICPAC/SHEA/APIC/IDSA Hand Hygiene Task Force. 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. Society for healthcare epidemiology of America/Association for Professionals in Infection Control/Infectious Diseases Society of America. MMWR. Recommendations and Reports: morbidity and Mortality Weekly Report. Recommendations Rep. 2002;51(RR–16):1–45. ( quiz CE1-4).
  • Harbison MA, Hammer SM. Inactivation of human immunodeficiency virus by Betadine products and chlorhexidine. J Acquired Immune Deficiency Syndromes. 1989;2(1):16–20.
  • Montefiori D. Effective inactivation of human immunodeficiency virus with chlorhexidine antiseptics containing detergents and alcohol. J Hosp Infect. 1990;15(3):279–282.
  • Linley E, Denyer SP, McDonnell G, et al. Use of hydrogen peroxide as a biocide: new consideration of its mechanisms of biocidal action. J Antimicrob Chemother. 2012;67(7):1589–1596.
  • Russell AD. Similarities and differences in the responses of microorganisms to biocides. J Antimicrob Chemother. 2003;52(5):750–763.
  • Ortega KL, Oliveira Rech B, De, Ferreira Costa AL, et al. Is 0.5% Hydrogen Peroxide Effective against SARS‐CoV‐2? Oral Dis Odi. 2020;13503. doi:10.1111/odi.13503
  • Rutala WA, Gergen MF, Weber DJ. Impact of an Oil-Based Lubricant on the Effectiveness of the Sterilization Processes. Infect Control Hosp Epidemiol. 2008;29(1):69–72.
  • Cramer A, Plana D, Yang HL, et al. Analysis of SteraMist ionized hydrogen peroxide technology in the sterilization of N95 respirators and other PPE: a quality improvement study (Occupational and Environmental Health). 2020. doi:10.1101/2020.04.19.20069997
  • Berkelman RL, Holland BW, Anderson RL. Increased bactericidal activity of dilute preparations of povidone-iodine solutions. J Clin Microbiol. 1982;15(4):635–639.
  • Gottardi W, Puritscher M. [Germicidal experiments with aqueous PVP-iodine-containing disinfecting solutions: effect of the content of free iodine on the bactericidal action against Staphylococcus aureus]. Zentralblatt Fur Bakteriologie, Mikrobiologie Und Hygiene. Serie B, Umwelthygiene, Krankenhaushygiene, Arbeitshygiene, Praventive Medizin. 1986;182(4):372–380.
  • Block SS, Ed. Disinfection, sterilization, and preservation (5th ed). Philadelphia, PA: Lippincott Williams & Wilkins; 2001.
  • Berg G, Chang SL, Harris EK. Devitalization of microorganisms by iodine. Virology. 1964;22(4):469–481.
  • Gershenfeld L. Iodine as a Virucidal Agent. J Am Pharm Assoc (Scientific Ed). 1955;44(3):177–182.
  • Eggers M, Eickmann M, Zorn J. Rapid and effective virucidal activity of povidone-iodine products against middle east respiratory syndrome coronavirus (MERS-CoV) and Modified vaccinia virus ankara (MVA). Infect Dis Ther. 2015;4(4):491–501.
  • Eggers M, Koburger-Janssen T, Eickmann M, et al. In vitro bactericidal and virucidal efficacy of povidone-iodine gargle/mouthwash against respiratory and oral tract pathogens. Infect Dis Ther. 2018;7(2):249–259.
  • Liang B, Yuan X, Wei G, et al. In-vivo toxicity studies and in-vitro inactivation of SARS-CoV-2 by povidone-iodine in-situ gel forming formulations (Microbiology). 2020. doi:10.1101/2020.05.18.103184
  • Kirk-Bayley J, Challacombe S, Sunkaraneni V, et al. The use of povidone iodine nasal spray and mouthwash during the current COVID-19 pandemic may protect healthcare workers and reduce cross infection. SSRN J; 2020. http://dx.doi.org/10.2139/ssrn.3563092
  • Sattar SA, Zargar B, Wright KE, et al. Airborne pathogens inside automobiles for domestic use: assessing in-car air decontamination devices using staphylococcus aureus as the challenge bacterium. Appl Environ Microbiol. 2017;83(10). DOI:10.1128/AEM.00258-17
  • Simmons BP. Anticipatics, handwashing, and handwashing facililties. Am J Infect Control. 1983;11(3):97–103.
  • Tischer M, Pradel G, Ohlsen K, et al. Quaternary ammonium salts and their antimicrobial potential: targets or nonspecific interactions? ChemMedChem. 2012;7(1):22–31.
  • Baker N, Williams AJ, Tropsha A, et al. Repurposing quaternary ammonium compounds as potential treatments for COVID-19. Pharm Res. 2020;37(6):104.
  • Pratelli A. Action of disinfectants on canine coronavirus replication in vitro. Zoonoses Public Health. 2007;54(9–10):383–386.
  • Gartenmann SJ, Dörig I, Sahrmann P, et al. Influence of different post-interventional maintenance concepts on periodontal outcomes: an evaluation of three systematic reviews. BMC Oral Health. 2017;17(1). DOI:10.1186/s12903-016-0244-6
  • Shapiro S, Giertsen E, Guggenheim B. An in vitro oral biofilm model for comparing the efficacy of antimicrobial mouthrinses. Caries Res. 2002;36(2):93–100.
  • Jo S, Kim H, Kim S, et al. Characteristics of flavonoids as potent MERS‐CoV 3C‐like protease inhibitors. Chem Biol Drug Des. 2019;94(6):2023–2030.
  • Carrouel F, Conte MP, Fisher J, et al. COVID-19: a recommendation to examine the effect of mouthrinses with β-cyclodextrin combined with citrox in preventing infection and progression. J Clin Med. 2020;9(4):1126.
  • Schrank CL, Minbiole KPC, Wuest WM. Are quaternary ammonium compounds, the workhorse disinfectants, effective against severe acute respiratory syndrome-coronavirus-2?. ACS Infect Dis Acsinfecdis 2020. 0c00265. https://doi.org/10.1021/acsinfecdis.0c00265
  • Ijaz MK, Whitehead K, Srinivasan V, et al. Microbicidal actives with virucidal efficacy against SARS-CoV-2. Am J Infect Control. 2020;48(8):972–973. S0196655320303138. .
  • Siddharta A, Pfaender S, Vielle NJ, et al. Virucidal activity of world health organization–recommended formulations against enveloped viruses, including zika, ebola, and emerging coronaviruses. J Infect Dis. 2017;215(6):902–906.
  • Wood A, Payne D. The action of three antiseptics/disinfectants against enveloped and non-enveloped viruses. J Hosp Infect. 1998;38(4):283–295.
  • Caruso AA, Del Prete A, Lazzarino AI. Hydrogen peroxide and viral infections: A literature review with research hypothesis definition in relation to the current covid-19 pandemic. Med Hypotheses. 2020;144:109910.
  • Casanova LM, Jeon S, Rutala WA, et al. Effects of Air Temperature and Relative Humidity on Coronavirus Survival on Surfaces. Appl Environ Microbiol. 2010;76(9):2712–2717.
  • Chan KH, Peiris JSM, Lam SY, et al. The effects of temperature and relative humidity on the viability of the SARS coronavirus. Adv Virol. 2011;2011:1–7.
  • Duan S-M, Zhao X-S, Wen R-F, et al. Stability of SARS coronavirus in human specimens and environment and its sensitivity to heating and UV irradiation. BES. 2003;16(3):246–255.
  • Lai MYY, Cheng PKC, Lim WWL. Survival of severe acute respiratory syndrome coronavirus. Clinl Infect Dis. 2005;41(7):e67–e71.
  • Sizun J, Yu MWN, Talbot PJ. Survival of human coronaviruses 229E and OC43 in suspension and after drying onsurfaces: A possible source ofhospital-acquired infections. J Hosp Infect. 2000;46(1):55–60.
  • van Doremalen N, Bushmaker T, Munster V. Stability of Middle East respiratory syndrome coronavirus (MERS-CoV) under different environmental conditions. Eurosurveillance. 2013;18(38):20590.
  • Warnes SL, Little ZR, Keevil CW. Human Coronavirus 229E remains infectious on common touch surface materials. MBio. 2015;6(6):e01697–01615.

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