Accesso libero

Types of Wounds and the Prevalence of Bacterial Contamination of Wounds in the Clinical Practice of Small Animals

INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Acharya, J., Mishra, S. K., Kattel, H. P., Rijal, B., Pokhrel, B. M., 2008: Bacteriology of Wound Infections Among Patients attending Tribhuvan University Teaching hospital, Kathmandu, Nepal. J. Nep. Asso. Med. Lab. Sci., 9, 76—80.Search in Google Scholar

2. Bayramov, D. F., Neff, J. A., 2017: Beyond conventional antibiotics—New directions for combination products to combat biofilm. Adv. Drug Deliv. Rev., 112, 48—60.10.1016/j.addr.2016.07.010Search in Google Scholar

3. Belmar-Liberato, R., Gonzalez-Canga, A., Tamame-Martin, P., Escribano-Salazar, M., 2011: Amoxicillin and amoxicillin-clavulanic acid resistance in veterinary medicine—the situation in Europe: a review. Vet. Med., 2011, 56, 473—485.10.17221/3293-VETMEDSearch in Google Scholar

4. Bessa, L. J., Fazii, P., Di Giulio, M., Cellini, L., 2015: Bacterial isolates from infected wounds and their antibiotic susceptibility pattern: some remarks about wound infection. Int. Wound J., 12, 47—52.10.1111/iwj.12049Search in Google Scholar

5. Bohling, M. W., Henderson, R. A., Swaim, S. F., Kincaid, S. A., Wright, J. C., 2004: Cutaneous wound healing in the cat: a macroscopic description and comparison with cutaneous wound healing in the dog. Vet. Surg., 33, 579—587.10.1111/j.1532-950X.2004.04081.xSearch in Google Scholar

6. Bowler, P. G., Duerden, B. I., Armstrong, D. G., 2001: Wound microbiology and associated approaches to wound management. Clin. Microbiol. Rev., 14, 244—269.10.1128/CMR.14.2.244-269.2001Search in Google Scholar

7. Di Conza, J. A., Badaracco, A., Ayala, J., Rodriguez, C., Famiglietti, Á., Gutkind, G. O., 2014: β-lactamases produced by amoxicillin-clavulanate-resistant enterobacteria isolated in Buenos Aires, Argentina: a new blaTEM gene. Rev. Argent. Microbiol., 46, 210—217.10.1016/S0325-7541(14)70075-6Search in Google Scholar

8. Fray, M. J., Dickinson, R. P., Huggins, J. P., Occleston, N. L., 2003: A potent, selective inhibitor of matrix metalloproteinase-3 for the topical treatment of chronic dermal ulcers. J. Med. Chem.,46, 3514—3525.10.1021/jm030803812877590Search in Google Scholar

9. Hariharan, H., Coles, M., Poole, D., Lund, L., Page, R., 2006: Update on antimicrobial susceptibilities of bacterial isolates from canine and feline otitis externa. Can. Vet. J., 47, 253—255.Search in Google Scholar

10. Heal, C. F., Banks, J. L., Lepper, P. D., Kontopantelis, E., van Driel, M. L., 2016: Topical antibiotics for preventing surgical site infection in wounds healing by primary intention. Cochrane Db. Syst. Rev., 11, 1—73.10.1002/14651858.CD011426.pub2646508027819748Search in Google Scholar

11. Lloret, A., Egberink, H., Addie, D., Belák, S., Boucraut-Baralon, C., Frymus, T., Marsilio, F., 2013:Pasteurella multocida infection in cats: ABCD guidelines on prevention and management. J. Feline Med. Surg., 15, 570—572.10.1177/1098612X1348921523813817Search in Google Scholar

12. Markey, B., Finola L., Archambault, M., Cullinane, A., Maguire, D., 2013:Clinical Veterinary Microbiology. Edinburgh, Elsevier, 920 pp.Search in Google Scholar

13. Murphy, C., Reid-Smith, R. J., Prescott, J. F., Bonnett, B. N., Poppe, C., Boerlin, P., McEwen, S. A., 2009: Occurrence of antimicrobial resistant bacteria in healthy dogs and cats presented to private veterinary hospitals in southern Ontario: a preliminary study. Can. Vet. J., 50, 1047—1053.Search in Google Scholar

14. Park, M. K., Myers, R. A., Marzella L., 1992: Oxygen tensions and infections: modulation of microbial growth, activity of antimicrobial agents, and immunologic responses. Clin. Infect. Dis., 14, 720—740.10.1093/clinids/14.3.7201562664Search in Google Scholar

15. Punjataewakupt, A., Napavichayanun, S., Aramwit, P., 2018: The downside of antimicrobial agents for wound healing. Eur. J. Clin. Microbiol. Infect. Dis., 1—16.10.1007/s10096-018-3393-5Search in Google Scholar

16. Rijal, B. P., Satyal, D., Parajuli, N. P., 2017: High burden of antimicrobial resistance among bacteria causing pyogenic wound infections at a tertiary care hospital in Kathmandu. Nepal. J. Pathog., 1—17.10.1155/2017/9458218Search in Google Scholar

17. Robson, M. C., 1997: Wound infection: a failure of wound healing caused by an imbalance of bacteria. Surg. Clin. North Am., 77, 637—650.10.1016/S0039-6109(05)70572-7Search in Google Scholar

18. Sarsted, 2017: Swabs — Sarstedt information. https://www.sarstedt.com/en/products/laboratory/microbiology/swabs/.Search in Google Scholar

19. Shrestha, S., Wenju, P., Shrestha, R., Karmacharya, R. M., 2016: Incidence and risk factors of surgical site infections in Kathmandu university hospital, Kavre, Nepal. Kathmandu Univ. Med. J., 14, 107—111.Search in Google Scholar

20. Suthar, N., Roy, S., Call, D. R., Besser, T. E., Davis, M. A., 2014: An individual-based model of transmission of resistant bacteria in a veterinary teaching hospital. PloS one, 9, 1—11.10.1371/journal.pone.0098589404396424893006Search in Google Scholar

21. Williams, J. M., Fowler, D., 1999: Wound management and reconstruction. In Fowler, D., Williams, J. M. (Eds.):Manual of canine and feline wound management and reconstruction. New York, Wiley, 200 pp.Search in Google Scholar

eISSN:
2453-7837
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Life Sciences, Molecular Biology, Biotechnology, Microbiology and Virology, Medicine, Veterinary Medicine