RESUMO -Avaliaram-se os efeitos de Salmonella Enteritidis sobre a colonização e o desenvolvimento do trato intestinal, a conversão alimentar e o ganho de peso em perus. Um total de 135 perus de corte de 1 dia foi distribuído em três tratamentos:controle; perus oriundos de ovos inoculados com Salmonella Enteritidis via casca e perus desafiados com água de bebida com Effects of experimentally inoculated Salmonella Enteritidis on the gastrointestinal health of turkeysABSTRACT -The effects of Salmonella Enteritidis on the colonization and development of the intestinal tract, feed conversion and weight gain were evaluated. A total of 135 day old turkeys were assigned to three treatments: control; turkeys from eggs inoculated with Salmonella Enteritidis via shell and turkeys challenged with drinking water with Salmonella Enteritidis. At 10, 20 and 28 days, the performance variables were evaluated and samples were collected to perform bacterial assessment, biometrics and histomorphometry. On days one, 15 and 28, samples of meconium/excreta were collected from all birds. The intestinal colonization increased during the initial phase when Salmonella was inoculated via eggshell. The intestine showed greater weight on the first, tenth and 28th days when Salmonella was present, with no differences regarding the intestine length. Salmonella Enteritidis was able to colonize the intestinal tract, establish infection, reduce bird performance and modify the cellular structures of the intestine. Contamination of the eggshell before hatching generated birds susceptible to infection at birth and the frequency of isolation of Salmonella Enteritidis persisted until 28 days of age.Salmonella inoculation by drinking water generated infected birds, but with less recovery of the pathogen with age increase.Inoculated birds showed inferior performance, confirming the potential damage to poultry production.
This study aimed to evaluate the incubation performance, the Salmonella Enteritidis capacity of penetration through the eggshell and the ability of colonization of the gastrointestinal tract. Four hundred turkey eggs were incubated and distributed into four treatments with 100 experimental units each: CC and CCA (inoculation with placebo in eggshell and air chamber, respectively), IC and ICA (inoculation with 4.2 X 104 CFU/mL of
To propose a novel modeling of aflatoxin immunization and surrogate toxin conjugate from AFB1 vaccines, an immunogen based on the mimotope, (i.e. a peptide-displayed phage that mimics aflatoxins epitope without toxin hazards) was designed. The recombinant phage 3P30 was identified by phage display technology and exhibited the ability to bind, dose dependent, specifically to its cognate target - anti-AFB1 antibody. In immunization assay, the phage-displayed mimotope and its peptide chemically synthesized were able to induce specific anti-AFB1 antibodies, indicating the proof of concept for aflatoxin mimicry. Furthermore, the phage 3P30 was homogeneously coated with chitosan, which also provided a tridimensional matrix network for mucosal delivery. After intranasal immunization, chitosan coated phages improved specific immunogenicity compared to the free antigen. It can be concluded that affinity-selected phage may contribute to the rational design of epitope-based vaccines in a prospectus for the control of aflatoxins and possibly other mycotoxins, and that chitosan coating improved the vectorization of the vaccine by the mucosal route.
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