Literature DB >> 9327555

Efficacy of vaporized hydrogen peroxide against exotic animal viruses.

R A Heckert1, M Best, L T Jordan, G C Dulac, D L Eddington, W G Sterritt.   

Abstract

The efficacy of vapor-phase hydrogen peroxide in a pass-through box for the decontamination of equipment and inanimate materials potentially contaminated with exotic animal viruses was evaluated. Tests were conducted with a variety of viral agents, which included representatives of several virus families (Orthomyxoviridae, Reoviridae, Flaviviridae, Paramyxoviridae, Herpesviridae, Picornaviridae, Caliciviridae, and Rhabdoviridae) from both avian and mammalian species, with particular emphasis on animal viruses exotic to Canada. The effects of the gas on a variety of laboratory equipment were also studied. Virus suspensions in cell culture media, egg fluid, or blood were dried onto glass and stainless steel. Virus viability was assessed after exposure to vaporphase hydrogen peroxide for 30 min. For all viruses tested and under all conditions (except one), the decontamination process reduced the virus titer to 0 embryo-lethal doses for the avian viruses (avian influenza and Newcastle disease viruses) or less than 10 tissue culture infective doses for the mammalian viruses (African swine fever, bluetongue, hog cholera, pseudorabies, swine vesicular disease, vesicular exanthema, and vesicular stomatitis viruses). The laboratory equipment exposed to the gas appeared to suffer no adverse effects. Vaporphase hydrogen peroxide decontamination can be recommended as a safe and efficacious way of removing potentially virus-contaminated objects from biocontainment level III laboratories in which exotic animal disease virus agents are handled.

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Year:  1997        PMID: 9327555      PMCID: PMC168702          DOI: 10.1128/aem.63.10.3916-3918.1997

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  2 in total

1.  Vaporized hydrogen peroxide sterilization of freeze dryers.

Authors:  J W Johnson; J F Arnold; S L Nail; E Renzi
Journal:  J Parenter Sci Technol       Date:  1992 Nov-Dec

2.  Vapor-phase hydrogen peroxide as a surface decontaminant and sterilant.

Authors:  N A Klapes; D Vesley
Journal:  Appl Environ Microbiol       Date:  1990-02       Impact factor: 4.792

  2 in total
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Review 2.  Respiratory Protective Equipment for Healthcare Providers During Coronavirus Pandemic: "Nec Temere, Nec Timide".

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3.  Improvement of Vivarium Biodecontamination through Data-acquisition Systems and Automation.

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4.  Examination of Material Compatibilities with Ionized and Vaporized Hydrogen Peroxide Decontamination.

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5.  Biomimetic recyclable microgels for on-demand generation of hydrogen peroxide and antipathogenic application.

Authors:  Hao Meng; Pegah Kord Forooshani; Pratik U Joshi; Julie Osborne; Xue Mi; Christa Meingast; Rattapol Pinnaratip; Jonathan Kelley; Ameya Narkar; Weilue He; Megan C Frost; Caryn L Heldt; Bruce P Lee
Journal:  Acta Biomater       Date:  2018-10-26       Impact factor: 8.947

6.  The use of an hydrogen peroxide multipurpose isolator for inhouse preparation of human embryo culture media: a unique successful Swiss randomized prospective study.

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7.  Inactivation of common hospital acquired pathogens on surfaces and in air utilizing engineered water nanostructures (EWNS) based nano-sanitizers.

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8.  Low-temperature decontamination with hydrogen peroxide or chlorine dioxide for space applications.

Authors:  T Pottage; S Macken; K Giri; J T Walker; A M Bennett
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9.  A simple decontamination approach using hydrogen peroxide vapour for Bacillus anthracis spore inactivation.

Authors:  J P Wood; M W Calfee; M Clayton; N Griffin-Gatchalian; A Touati; S Ryan; L Mickelsen; L Smith; V Rastogi
Journal:  J Appl Microbiol       Date:  2016-10-23       Impact factor: 3.772

10.  Efficacy of dry mist of hydrogen peroxide (DMHP) against Mycobacterium tuberculosis and use of DMHP for routine decontamination of biosafety level 3 laboratories.

Authors:  M Grare; M Dailloux; L Simon; P Dimajo; C Laurain
Journal:  J Clin Microbiol       Date:  2008-07-16       Impact factor: 5.948

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