Prebiotics and probiotics, either alone or together (synbiotics), can influence the intestinal microbiota and modulate the immune response. We aimed to investigate the effects of prebiotic and synbiotic administration during the early stage of development on the histological structures of central (bursa of Fabricius and thymus) and peripheral (spleen) lymphatic organs in broilers. We used 800 hatching eggs from meat-type hens (Ross 308). Prebiotics and synbiotics were administered in ovo into the air chamber of chicken eggs at d 12 incubation, as follows: prebiotic inulin (Pre1), Bi2tos (Pre2), a synbiotic composed of inulin and Lactococcus lactis subsp. lactis IBB SL1 (Syn1), a synbiotic composed of Bi2tos and L. lactis subsp. cremoris IBB SC1 (Syn2), or physiological saline (control group, C). In ovo delivery of prebiotics and synbiotics had no adverse effect on the development of the immune system in exposed chickens. Administration of Bi2tos with L. lactis subsp. cremoris (Syn2) decreased the cortex/medulla ratio in the thymus and slowed the development of the cortex in bursal follicles on d 21 posthatching, with consequent impacts on the primary lymphatic organs. The above treatment also stimulated germinal centers' formation in the spleens of 21- and 35-day-old chickens, indicating enhanced B-cell proliferation in secondary lymphatic organs. Syn2 also caused an age-dependent increase in the spleen/bursa of Fabricius ratio. In conclusion, the in ovo administration of pre- and synbiotics at d 12 incubation can modulate the central and peripheral lymphatic organ development in broilers. This effect is more pronounced after synbiotic treatment than in prebiotic-treated groups.
The purpose of this study was to examine how pre- and synbiotic administration in ovo into the air chamber at d 12 of egg incubation influenced the specific immune cell composition and distribution in the ileum, cecal tonsils (CT) and bursa of Fabricius of broilers. The experiment was performed on 800 hatching eggs of the meat-type chickens (Ross 308). Hatching eggs were treated with: prebiotic, consisting of inulin (Pre1) or Bi(2)tos(®) (Pre2); symbiotic, composed of inulin and Lactococcus lactis subsp. lactis IBB SL1 (Syn1) or Bi(2)tos and Lactococcus lactis subsp. cremoris IBB SC1 (Syn2); or physiological saline as a control group. Seven chickens from each treatment group were randomly selected on , 1, 7, and 21 after hatch for tissue collection. Ileum, cecal tonsil and bursa of Fabricius samples were immunohistochemically stained and the proportions of Bu-1(+), CD3(+), CD4(+), CD8α(+) and TCRγδ(+) cells were estimated. It was indicated that the pre- and synbiotics do not adversely affect the development of the GALT of the chicken. The temporary decrease in B-cell number in bursa on d 7 after hatch suggested an increased colonization rate of the peripheral lymphoid organs by these cells after Pre1, Pre2, and Syn2 treatment. In CT at d 7 after hatch more potent colonization of the GALT by T cells was observed in all pre- and synbiotic treated groups and by B cells in both synbiotic-treated groups than those in respective controls. Then, on d 21 in both synbiotic-treated groups, an increase in T-cell number in ileum was also noticed with faster colonization of the CT by B cells. In 21-day-old chickens, both synbiotics exerted stronger stimulatory effect on the GALT colonization by T cells then prebiotics respectively. Similarly, the colonization by B cells was more pronounced in the Syn2 than in the Pre2 group. The data obtained in this study indicated that prebiotics and particularly synbiotics administrated in ovo stimulated GALT development after hatch.
The confirmed advantageous effects of oxygen/ozone therapy in several clinical conditions stimulated experimental studies on effects of the therapy in rats with an induced septic shock. The studies were conducted on adult male rats of Wistar strain. Four groups of the animals, each of 15 rats, included: I--control group, (C); II--animals intraperitoneally administered with O(2)/O(3) (CO), III--rats given of Escherichia coli endotoxin (lipopolysaccharide-LPS) (CL), IV--rats administered with the lipopolysaccharide plus administered with the oxygen/ozone mixture (OL). Activities of catalase and superoxide dismutase and of free radical reactions were estimated. The exposure to LPS augmented activities of SOD and of catalase in liver, lungs and heart. In all the examined organs LPS induced significant changes in levels of free radicals. Except of the lungs, parallel administration of the rats with LPS and ozone/oxygen revoked development of the alterations. The obtained results point to a strong, stabilizing and regenerative effect of ozonotherapy.
Background A previous study showed that prebiotics and synbiotics administered in ovo into the egg air cell on the 12th day of incubation enhance the growth and development of chickens. However, the influence of this procedure on the development and efficiency of the innate immune system of broiler chickens is unclear. Therefore, the aim of this study was to evaluate whether the early (on the 12th day of embryo development) in ovo administration of selected prebiotics (inulin − Pre1 and Bi 2 tos − Pre2) and synbiotics (inulin + Lactococcus lactis subsp. lactis IBB SL1 − Syn1 and Bi 2 tos + L. lactis subsp. cremoris IBB SC1 − Syn2) influences the innate immune system. Results Chickens (broiler, Ross 308) that were treated with Pre1 exhibited a decreased H/L ratio on D7, but an increased H/L ratio was observed on D21 and D35. In the remaining experimental groups, an increase in the H/L ratio was observed on D21 and D35. The oxidative potential of leukocytes measured using the NBT test increased on D21 in Pre2 and Syn1 groups. The rate of the phagocytic ability of leukocytes increased in Pre1 and Syn1 groups on D21. The phagocytic index decreased in Pre1 and Syn2 groups on D21 and D35. Concurrently, the count of WBC in circulating blood decreased on D21 in Pre1, Pre2, and Syn1 groups. The hematocrit value was increased in Syn1 chickens on D21, in Pre1 chickens on D35, and in Syn2 chickens on both time points. Conclusions Early in ovo treatment of chicken embryos with prebiotics and synbiotics may temporarily modulate not only the production/maturation of leukocytes but also their reactivity. Electronic supplementary material The online version of this article (10.1186/s12917-019-1850-8) contains supplementary material, which is available to authorized users.
The study aimed at the analysis of prevalence frequency and localisation of tumours in domestic animals. The research material comprised 4,212 tumours developed in dogs, cats, horses, and exotic animals, isolated during surgery, autopsy or biopsy, performed for the purpose of histopathological diagnosis. The most numerous group involved canine tumours, including 3,585 cases (85.1%), followed by tumours in cats (532 cases, 12.6%), ferrets (34 cases, 0.81%), rats (19 cases, 0.45%), horses (15 cases, 0.36%), and rabbits (14 cases, 0.33%). A significant increase in incidence of tumours was noted, as compared to studies performed in the same region of Poland in 1957-1995 and 2000-2004
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