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2011 | 67 | 02 |

Tytuł artykułu

Przyczyny szczególnie szybko narastającej antybiotykooporności bakterii oraz przeciwdziałanie zagrożeniu dla zdrowia ludzi ze strony bakterii zoonotycznych

Warianty tytułu

EN
Causes of the particularly rapid rise of antibiotic resistance of bacteria and action against the risk for human health originating from zoonotic bacteria

Języki publikacji

PL

Abstrakty

EN
Mechanisms of antimicrobial resistance are briefly presented, stressing that bacteria from clinical and non-clinical sources are becoming increasingly resistant during the 2 last decades to available antibiotics. Earlier this was the case in Gram-positive bacteria and during the last decade it is occuring faster in relation to Gram-negative bacteria. This is mainly due to mobile genes located on plasmids. The increasing international movement of humans, animals and animal products plays an important role in this global spread. Moreover, information on the emergence of a new antimicrobial antibiotic resistance in India and Pakistan is presented, on the basis of observations regarding Enterobacteriaceae, transferred by humans to the United Kingdom. It is encoded by the recently identified NDM-1 gene. This gene is responsible for the currently intensively spreading multiple drug resistance, posing a great risk to public health. In this situation the role of bacteria occurring in food and companion animals is evaluated as an additional risk to public health, although until now the mentioned gene has not been detected in strains from these sources. However other antibiotic resistance genes from this source can be transferred to bacteria occurring in humans. In connection with this the present European Union’s conclusions and recommendations on antimicrobial resistance of bacteria in animal reservoirs addressed to the Veterinary Services of the Member Countries with the intension of minimizing this hazard for human health are discussed.

Wydawca

-

Rocznik

Tom

67

Numer

02

Opis fizyczny

s.75-78,rys.,bibliogr.

Twórcy

  • Zakład Chorób Świń, Państwowy Instytut Weterynaryjny - Państwowy Instytut Badawczy, Al.Partyzantów 57, 24-100 Puławy
autor

Bibliografia

  • 1.Anon.: Joint Opinion on antimicrobial resistance (AMR) focused on zoonotic infections. EFSA Journal 2009, 7, 1372.
  • 2.Baiden F., Owusu-Agyei S., Webster J., Chandramohan D.: The Reed for New antibiotics. Lancet 2010, 375, 637-638.
  • 3.DuPont H. L.: The growing threat of foodborne bacterial enteropathogenes of animal origin. Clin. Infect. Dis. 2007, 45, 1353-1361.
  • 4.Dupont J., Fraise A., Wise R.: Use of antimicrobial agents in animal feeds: implications for human health. Rev. Inf. Dis. 1987, 9, 447-460.
  • 5.Guardabassi L., Jansen L. B., Kruse H. Ed.: Guide to Antimicrobial use in Animals. Blackwell Publishing 2008, 1-223.
  • 6.Hawkey P. M., Jones A. M.: The changing epidemiology of resistance. J. Antimicrob. Chemother. 2009, 64, 3-10.
  • 7.Jensen L. B., Arens P., Dons L.: Transient intestinal carriage after ingestion of antibiotic resistant Enterococcus faecium from chicken and pork. New England J. Med. 2001, 345, 1161-1166.
  • 8.Jong A. de, Bywater R., Butty P., Deroover E., Godinho K., Klein U., Marion H., Simjee S., Smets K., Thomas V., Valle M., Wheadon A.: A pan-European survey of antimicrobioal susceptibility towards human-use antimicrobial drugs among zoonotic and commensal enteric bacteria isolated from healthy food-producing animals. J. Antimicrob. Chemother 2009, 63, 733-744.
  • 9.Klare J., Badstubar D., Konstabel C.: Decreased incidence of VanA-type vancomycin-resistant enterococci isolated from poultry meat and from fecal samples of humans in the community after discontinuation of avoparcin usage in animal husbandry. Microb. Drug Res. 1999, 5, 45-51.
  • 10.Kumarasamy K. K., Teleman M. A., Walsh T. R., Bawaria J., Butt F., Balakrishnan R., Chaudhary U., Doumith M., Giske C. G., Irfan S., Krishnan P., Kumar A. V., Maharjan S., Mushtag S., Noorie T., Paterson D. L., Pearson A., Perry C., Pike R., Rao B., Ray U., Sarma J. B., Sharma M., Sheridan E., Thirunarayan M. A., Turton J., Upadhyay S., Warner M., Welfare W., Livermore D. M., Woodford N.: Emergence of a new antibiotic resistance mechanism in India, Pakistan, and the UK: a molecular, biological, and epidemiological study. The Lancet Infectious Diseases 2010, 10, 597-602.
  • 11.Philips J., Casewell M., Cox T., de Groot B., Fries Ch., Jones R., Nightingale Ch., Preston R., Waddell J.: Does the use of antibiotics in food animals pose a risk to human health? A critical review of Publisher data. J. Antimicrob. Chemotherapy 2004, 53, 28-52.
  • 12.Prescott J. F.: Antibiotics: miracle drugs or pig food? Can. Vet. J. 1997, 38, 763-766.
  • 13.Szuplewska M., Dziewit Ł., Baj J., Bartosik D.: Identyfikacja i charakterystyka ruchomych elementów genetycznych bakterii z rodzaju Paracoccus. Mikrobiologia 100 lat po Robercie Kochu, PTN Warszawa 2010, 12-14.
  • 14.Threlfall E. J., Day M., de Pinna E., Charlett A., Goodyear K. L.: Assessment of factors contributing to changes in the incidence of antimicrobial drug resistance in Salmonella enterica serotypes Enteritidis and Typhimurium from humans in England and Wales in 2000, 2002 and 2004. Int. J. Antimicrob. Agents 2006, 28, 389-395.
  • 15.Threlfall E. J., Ward L. R., Frost J. A., Cheasty T., Willshaw G. A.: The emergence and spread of antibiotic resistance in food-borne bacteria in the United Kingdom. AUPA Newsletter 1999, 17, 1-7.
  • 16.Yong D., Teleman M. A., Giske C. G., Cho H. S., Sundman K., Lee K., Walsh T. R.: Characterization of a New metalo-â-lactamase gene, blaNDM-1, and a novel erythromycin esterase gene carried on a unique genetic structure in Klebsiella pneumoniae sequence type 14 from India. Antimicrob. Agents. Chemother. 2009, 53, 5046-5054.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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