The purpose of this study was to elaborate prebiotic yoghurt using ovine milk and different inulin concentrations (0, 2 and 6%). Samples were submitted to laboratory analysis and two sensory tests with 100 consumers. The results of apparent viscosity and firmness determined by instrumental analysis of each yoghurt and control differed significantly. Just-About-Right showed consistency as the main attribute that varied in treatments. According to penalty analysis, prebiotic yoghurt containing 6% inulin had minor penalties, which indicates its advantage in the quest to better consumer demands. Hence, this treatment demonstrated better results as well as the many prebiotic benefits associated with an adequate fibre amount.
Abstract. Although group B Streptococcus (GBS) has been classically described as an exclusively extracellular pathogen, growing evidence suggests that it may be internalized by epithelial cells. However, the fates of intracellular GBS and of infected respiratory epithelial cells remain unclear. Little is known about the bacterial components involved in these processes. The present study investigated the bacterial internalization by A549 cells and the apoptosis/necrosis of the infected human epithelial cells. The morphological changes in A549 cells observed from 2 h post-infection with GBS included vacuolization and the formation of apoptotic bodies. Flow cytometry revealed that 81.2% of apoptotic A549 cells were infected with GBS serotype III 90356-liquor. Moreover, a double-staining assay using propidium iodide (PI)/Annexin V (AV) gave information about the numbers of viable (PI -/AV -) (18.27%) vs. early apoptotic (PI -/AV + ) (73.83%) and late apoptotic cells (PI + /AV + ) (7.37%) during infection of A549 cells with GBS III 90356-liquor. In addition, 37% necrotic cells were observed in A549 cells infected with GBS serotype V 90186-blood. In conclusion, GBS serotypes III and V induce apoptosis of epithelial cells in the early stages of GBS infection, resulting in tissue destruction, bacterial spreading and, in consequence, invasive disease or systemic infection.
Mastitis occupies a prominent place among the diseases that affect dairy herds due to economic problems and public health. Staphylococcus spp. are infectious agents more involved in the etiology of caprine mastites, especially coagulase-negative Staphylococcus. Nineteen isolates of Staphylococcus spp. were obtained from subclinical caprine mastitis. All isolates were characterized by MALDI-TOF MS, being 47.36% (9/19) identified for S. epidermidis, 15.78% (3/19) for S. warneri, 10.52% (2/19) for S. aureus and S. caprae and 5.26% (1/19) for S. lugdunensis, S. simulans, and S. cohnii. All isolates characterized by MALDI-TOF were subjected a to polymerase chain reaction (PCR) for the 16S rRNA gene of Staphylococcus spp. to confirm the gender. After determining the species, tests for phenotypic detection of resistance to beta-lactams were carried out simple disk diffusion oxacillin, cefoxitin, penicillin G and amoxicillin + clavulanic acid, agar “screen” oxacillin and microdilution (MIC) cefoxitin. The disk diffusion test showed a strength of 58% (11/19) for penicillin G, 26.31% (5/19) for cefoxitin and 26.31% (5/19) for oxacillin. All strains were susceptible to amoxicillin + clavulanic acid and agar “screen” oxacillin. In the MIC, 63.15% (12/19) of the samples were cefoxitin resistant (MIC >4.0μg/ml). Then isolates were subjected to detection of the mecA resistance genes and regulators (mecl and mecRI), mecC and blaZ. Two samples of Staphylococcus epidermidis had the mecA gene. All isolates were negative for the mecA gene variant, mecl, mecRI, mecC and blaZ. These findings reinforce the importance of this group of microorganisms in the etiology of subclinical mastitis in goats and open perspectives for future research to investigate the epidemiology of the disease.
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