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A Nursery Outbreak of Staphylococcus aureus Pyoderma Originating From a Nurse With Paronychia

Published online by Cambridge University Press:  02 January 2015

Wen-Tsung Lo
Affiliation:
Department of Pediatrics, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan
Chih-Chien Wang*
Affiliation:
Department of Pediatrics, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan
Mongling Chu
Affiliation:
Department of Pediatrics, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan
*
Department of Pediatrics, Tri-Service General Hospital, No. 325, Cheng-Kung Rd., Sec. 2, Neihu 114, Taipei, Taiwan

Abstract

An outbreak of methicillin-susceptible Staphylococcus aureus pyoderma occurred in the nursery of a tertiary-care referral center. All strains retrieved from the outbreak, including one from a nurse's infected finger, were typed by arbitrarily primed polymerase chain reaction and automated ribotyping. The results indicated that the spread of the outbreak was probably facilitated by contamination of the nurse with paronychia.

Type
Concise Communications
Copyright
Copyright © The Society for Healthcare Epidemiology of America 2002

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References

1.Forfat, JO, Bali, CL, Elias-Jones, TF, Edmunds, PN. Staphylococcal infection of the newborn. BMJ 1953;ii:170174.CrossRefGoogle Scholar
2.Gillespie, WA, Simpson, K, Tozer, RC. Staphylococcal infection in a maternity hospital. Lancet 1958;ii:10751080.CrossRefGoogle Scholar
3.Jellard, J. Umbilical cord as a reservoir of infection in a maternity hospital. BMJ 1957;94:925928.CrossRefGoogle Scholar
4.Mortimer, EA, Wolinsky, E. Gonzaga, AT, Rammelkamp, CH. Role of airborne transmission in staphylococcal infections. BMJ 1966;i:319323.Google Scholar
5.Williams, REO, Blowers, R, Garrod, LP, Shooter, RA. Staphylococcal infections: introduction. In: Williams, REO, ed. Hospital Infection Causes and Prevention, 2nd ed. London: Lloyd-Luke (Medical Books) Ltd; 1966:2241.Google Scholar
6.National Committee for Clinical Laboratory Standards. Performance Standards for Antimicrobial Disk Susceptibility Tests. Villanova, PANational Committee for Clinical Laboratory Standards; 1997. Approved standard. Document M2-A6.Google Scholar
7.Ausubel, FM, Brent, R, Kingston, RE, et al. Current Protocols in Molecular Biology, vol. 1. Chichester, United Kingdom: John Wiley & Sons; 1990.Google Scholar
8.Bruce, JL. Automated system rapidly identifies and characterizes microorganism in food. Food Technology 1996;50:7781.Google Scholar
9.Sethi, MR. Fully automated microbial characterization and identification for industrial microbiologists. American Laboratory 1997;5:3135.Google Scholar
10.Wiswell, TE, Curtis, J, Dobek, AS, Zierdt, CH. Staphylococcus aureus colonization after neonatal circumcision in relation to device used. J Pediatr 1991;119:302304.CrossRefGoogle ScholarPubMed
11.Gooch, JJ, Britt, EM. Staphylococcus aureus colonization and infections in newborn nursery patients. American Journal of Diseases in Children 1978;132:893896.Google ScholarPubMed
12.Long, SS, Swenson, RM. Development of anaerobic fecal flora in healthy newborn infants. J Pediatr 1977;91:298301.CrossRefGoogle ScholarPubMed
13.Weist, K, Wendt, C, Petersen, LR, Versmold, H, Ruden, H. An outbreak of pyodermas among neonates caused by ultrasound gel contaminated with methicillin-susceptible Staphylococcus aureus. Infect Control Hosp Epidemiol 2000;21:761764.CrossRefGoogle ScholarPubMed