Reducing the Carriage of Foodborne Pathogens in Livestock and Poultry

Снижение носительства пищевых патогенов у сельскохозяйственных животных и птицы
Michael P. Doyle, Marilyn C. Erickson
2006-06-01

CampylobacterSalmonellafoodborne pathogenslivestock and poultrypathogen carriage reduction
Several foodborne pathogens, including Salmonella species and campylobacters, are common contaminants in poultry and livestock. Typically, these pathogens are carried in the animal's intestinal tract asymptomatically; however, they can be shed in feces in large populations and be transmitted by other vectors from feces to animals, produce, or humans. A wide array of interventions has been developed to reduce the carriage of foodborne pathogens in poultry and livestock, including genetic selection of animals resistant to colonization, treatments to prevent vertical transmission of enteric pathogens, sanitation practices to prevent contamination on the farm and during transportation, elimination of pathogens from feed and water, feed and water additives that create an adverse environment for colonization by the pathogen, and biological treatments that directly or indirectly inactivate the pathogen within the host. To successfully reduce the carriage of foodborne pathogens, it is likely that a combination of intervention strategies will be required.
1
Infected animals can shed large pathogen populations in feces, enabling transmission to animals, produce, and humans through other vectors.
2
Interventions include genetic resistance selection, prevention of vertical transmission, sanitation, pathogen-free feed and water, inhibitory additives, and biological treatments.
3
Reducing pathogen carriage will likely require combining multiple intervention strategies rather than relying on a single measure.
4
Salmonella species and campylobacters commonly colonize poultry and livestock intestines asymptomatically.

Foodborne pathogen carriage in the intestinal tracts of livestock and poultry

Intervention strategies for reducing pathogen colonization, shedding, transmission, and contamination across animal production systems

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2006-06-01
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Michael P. Doyle
Marilyn C. Erickson
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