• FluTrackers.com Inc. does not provide medical advice. Information on this web site is collected from various internet resources, and the FluTrackers board of directors makes no warranty to the safety, efficacy, correctness or completeness of the information posted on this site by any author or poster. The information collated here is for instructional and/or discussion purposes only and is NOT intended to diagnose or treat any disease, illness, or other medical condition. Every individual reader or poster should seek advice from their personal physician/healthcare practitioner before considering or using any interventions that are discussed on this website. By continuing to access this website you agree to consult your personal physican before using any interventions posted on this website, and you agree to hold harmless FluTrackers.com Inc., the board of directors, the members, and all authors and posters for any effects from use of any medication, supplement, vitamin or other substance, device, intervention, etc. mentioned in posts on this website, or other internet venues referenced in posts on this website.
  • We are not asking for any donations. Do not donate to any entity who says they are raising funds for us.

Significance of Fomites in the Spread of Respiratory

Anne

Senior Moderator
http://aem.asm.org/cgi/content/full/73/6/1687
Significance of Fomites in the Spread of Respiratory and Enteric Viral Disease<sup></sup>




some extract. free full article

Worldwide annually there are 1.7 million deaths from diarrheal<sup> </sup>diseases and 1.5 million deaths from respiratory infections<sup> </sup>(56). Viruses cause an estimated 60% of human infections, and<sup> </sup>most common illnesses are produced by respiratory and enteric<sup> </sup>viruses (7, 49). Unlike bacterial disease, viral illness cannot<sup> </sup>be resolved with the use of antibiotics. Prevention and management<sup> </sup>of viral disease heavily relies upon vaccines and antiviral<sup> </sup>medications (49). Both vaccines and antiviral medications are<sup> </sup>only 60% effective (39, 49). Additionally, to date there are<sup> </sup>no vaccines or antiviral drugs for most common enteric and respiratory<sup> </sup>viruses with the exception of influenza virus and hepatitis<sup> </sup>A virus (HAV). Consequently, viral disease spread is most effectively<sup> </sup>deterred by preclusion of viral infection.<sup> </sup> Increases in population growth and mobility have enhanced pathogen<sup> </sup>transmission and intensified the difficulty of interrupting<sup> </sup>disease spread (14). Control of viral disease spread requires<sup> </sup>a clear understanding of how viruses are transmitted in the<sup> </sup>environment (27). For centuries it was assumed that infectious<sup> </sup>diseases were spread primarily by the airborne route or through<sup> </sup>direct patient contact, and the surrounding environment played<sup> </sup>little or no role in disease transmission (19, 27). Up until<sup> </sup>1987 the Centers for Disease Control and the American Hospital<sup> </sup>Association focused on patient diagnosis due to the belief that<sup> </sup>nosocomial infections were not related to microbial contamination<sup> </sup>of surfaces (19). Over the years studies have changed the perspective<sup> </sup>on viral transmission to include a more complex multifactorial<sup> </sup>model of disease spread (27). There is now growing evidence<sup> </sup>that contaminated fomites or surfaces play a key role in the<sup> </sup>spread of viral infections (3, 7, 38, 71).<sup> </sup>
Viral transmission is dependent on interaction with the host<sup> </sup>as well as interaction with the environment (60). Viruses are<sup> </sup>probably the most common cause of infectious disease acquired<sup> </sup>indoors (7, 71). The rapid spread of viral disease in crowded<sup> </sup>indoor establishments, including schools, day care facilities,<sup> </sup>nursing homes, business offices, and hospitals, consistently<sup> </sup>facilitates disease morbidity and mortality (71). Yet, fundamental<sup> </sup>knowledge concerning the role of surfaces and objects in viral<sup> </sup>disease transmission is lacking, and further investigation is<sup> </sup>needed (52, 60, 61). The goal of this article was to use existing<sup> </sup>published literature to assess the significance of fomites in<sup> </sup>the transmission of viral disease by clarifying the role of<sup> </sup>fomites in the spread of common pathogenic respiratory and enteric<sup> </sup>viruses.
FIG. 1. Factors influencing virus survival on fomites.

zam0060776300001.gif


FIG. 2. Respiratory virus inactivation rates (K<sub>i</sub>).
zam0060776300002.gif

Several different viruses cause respiratory infections, including<sup> </sup>respiratory syncytial virus (RSV), human parainfluenza virus<sup> </sup>(1 thru 4) (HPIV), influenza virus (A and B), human coronavirus<sup> </sup>(SARS, OC43, and 229E), rhinovirus, and adenovirus (serotypes<sup> </sup>4 and 7) (18). It is generally accepted that respiratory viruses<sup> </sup>are spread person to person via aerosol transmission (7, 27).<sup> </sup>Nevertheless, current scientific evidence also suggests that<sup> </sup>fomites are an important vehicle in the spread of respiratory<sup> </sup>viruses (7). By using an aerosolized source, HPIV1 was found<sup> </sup>to infect only 2 of 40 children at a distance of 60 cm (37).<sup> </sup>Therefore, HPIV transmission by aerosol was considered improbable;<sup> </sup>however, transmission may have taken place by surface contamination<sup> </sup>or close contact (37). Respiratory viruses cause sneezing and<sup> </sup>coughing, which expel an estimated 10<sup>7</sup> infectious virions per<sup> </sup>ml of nasal fluid (18). Nasal secretions can travel at a velocity<sup> </sup>of over 20 m per second and a distance greater than 3 m (about<sup> </sup>10 feet) to contaminate surrounding fomites (42, 57, 78).<sup> </sup> Viruses have been isolated on fomites in day care centers and<sup> </sup>homes (influenza A virus) (12), offices (parainfluenza virus)<sup> </sup>(S. A. Boone and C. P. Gerba, submitted for publication), and<sup> </sup>hospitals (coronavirus, parainfluenza virus, and RSV) (23) using<sup> </sup>PCR. A hospital in Taiwan used reverse transcriptase PCR to<sup> </sup>detect coronavirus on hospital phones, doorknobs, computer mouses,<sup> </sup>and toilet handles during an outbreak of severe acute respiratory<sup> </sup>syndrome (SARS) (23). Studies have proven that RSV, HPIV, influenza<sup> </sup>virus, coronavirus, and rhinovirus can remain viable on fomites<sup> </sup>for several hours to several days (Tables 1 and 3) (5, 7, 9,<sup> </sup>51). Avian influenza virus was detected on several surfaces<sup> </sup>for over 6 days (73). Studies have demonstrated that RSV, influenza<sup> </sup>virus, parainfluenza virus, and rhinovirus can survive on hands<sup> </sup>for significant periods of time and that these viruses can be<sup> </sup>transferred from hands and fingers to fomites and back again<sup> </sup>(Tables 1 and 2) (5, 7, 33, 51). After a 10-second exposure,<sup> </sup>70% of rhinovirus was transferred from donor to recipient hands<sup> </sup>in the 1978 study by Gwaltney et al. (30). Also, Gwaltney et<sup> </sup>al. demonstrated that subjects with cold symptoms had rhinovirus<sup> </sup>on their hands, and the virus was recovered from 43% of the<sup> </sup>plastic tiles they touched (30). Contaminated hands frequently<sup> </sup>come into contact with portals of entry, and so the potential<sup> </sup>for viral infection from contaminated fomites and hands exists.<sup> </sup>A study by Hendley et al. (36) found that 1 in 2.7 hospital<sup> </sup>grand round attendees rubbed their eyes and 33% picked their<sup> </sup>nose within a 1-hour observation period (36). Indirect evidence<sup> </sup>from clinical and laboratory studies clearly supports the involvement<sup> </sup>of fomites in respiratory virus infection. However, direct evidence<sup> </sup>supporting respiratory virus transmission or infection is still<sup> </sup>scarce. A study by Gwaltney et al. (29) observed that 50% of<sup> </sup>subjects developed infections after handling a coffee cup contaminated<sup> </sup>with rhinovirus. The study also demonstrated that rhinovirus<sup> </sup>self-inoculation can result from rubbing the nasal mucosa with<sup> </sup>contaminated fingers and could lead to infection (29).
 
Re: Significance of Fomites in the Spread of Respiratory

it has been argued that in the tropes flu spreads through fomites/contact,
because temperature and humidity are not favourable for flu-viruses.

(paper by Palese et.al , 2008)

the same could apply to swine flu in Mexico ?!?

still it spreads efficiently
 
Re: Significance of Fomites in the Spread of Respiratory

You see that influenza virus have a low ( bad ) inactivation rate and is able to "survive" 48 hours ( and more if it's H5N1 ). It' s global thought.. not exactly for THIS Mexico's one.
do you have the link for " palese's paper ?"
 
Back
Top