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Intra-mammary (IM) bacterial infection in cattle can result in clinical outcomes that range from being acute and life-threatening to those that are chronic and sub-clinical. The typical bacteria involved in IM bacterial infections activate the mammary immune system in different ways which can influence the severity of the outcome. A clear understanding of the mechanisms that activate and regulate this response is central to the development of effective preventative and treatment regimes. This review focuses on the different immune responses of the bovine mammary gland to common mastitis-causing pathogens. There is special emphasis on comparing the responses to Escherichia coli and Staphylococcus aureus infections, as these are typically associated, respectively, with acute/severe and chronic/sub-clinical forms of the disease.  相似文献   

3.
The aim of this study was to characterize the immune response in Staphylococcus aureus chronically infected bovine mammary glands during active involution. Twenty-one Holstein non-pregnant cows in late lactation either uninfected or with chronic naturally acquired S. aureus intramammary infections (IMI) were included in this study. Cows were slaughtered at 7, 14 and 21 d after cessation of milking and samples for immunohistochemical analysis were taken. Protein expression of toll-like receptor 2 (TLR2) and TLR4 was significantly higher in S. aureus-infected quarters than in uninfected controls at the three involution stages studied. Protein expression of tumor necrosis factor-alpha (TNF-α), interleukin (IL)-1α and IL-17 was significantly affected by IMI; being higher in S. aureus-infected than uninfected quarters during all evaluated stages. In S. aureus-infected and uninfected quarters protein expression of lactoferrin increased from day 7–14 of involution, decreasing significantly to day 21 in mammary quarters with chronic infections. The number of monocytes-macrophages was significantly higher in S. aureus-infected than in uninfected control quarters at 7 and 21 d of involution. The number of T lymphocytes was significantly higher in S. aureus-infected than in uninfected quarters at 7 and 14 d of involution while the number of B lymphocytes was significantly higher in S. aureus-infected than in uninfected quarters during all evaluated stages, showing a progressive increase as involution advanced. These results demonstrated a sustained and exacerbated innate and adaptive immune response during chronic S. aureus IMI, playing a critical role in the infection control during active involution.  相似文献   

4.
Mammary gland epithelial cells are likely to be important effectors in defending against mastitis, yet little is known about their response mechanisms. Here, we describe a cryopreserved bovine mammary epithelial cell model to study the infection response. Primary cell cultures from four Holstein cows were prepared, and frozen after two passages. The cell cultures from each cow were then thawed and maintained separately, yet simultaneously, and exposed to treatments that included infection with Staphylococcus aureus or exposure to LPS from Escherichia coli. A clear inflammatory response was shown by a significant (P < 0.05), dose dependent, increase of lactoferrin and IL-8 secretion within 24h in response to S. aureus or LPS. Marked increases (P < 0.05) in lactoferrin, TNF-alpha and serum amyloid A (SAA) mRNA expression were also observed. The results indicate the usefulness of our model to study infection responses of mammary epithelial cells, where all cells are simultaneously exposed to the same infection pressure. These responses can be studied over time, and most importantly, biological replication is provided by the four different genotypes being investigated individually. Finally, the results indicate that mammary epithelial cells play an important role in inflammatory response, through the production of pro-inflammatory cytokines, an acute phase protein, and lactoferrin.  相似文献   

5.
Staphylococcus aureus is the most persistent pathogen causing ovine mastitis. This study investigated S. aureus binding to cultured epithelial cells obtained from the mammary gland. A staphylococcal 145kDa cell wall adhesin, originally isolated from a bovine mastitis strain, was detected in lysostaphin-solubilized ovine mastitis strains and in the encapsulated strain A. This adhesin was able to bind to cultured ovine mammary gland epithelial cells (MGEC) and to a rat intestinal epithelial cell line (RIE-1), exhibiting different electrophoretic mobilities that could be attributable to protein polymorphism. Inhibition assays using antibodies against 145kDa adhesin and against whole bacteria showed the specificity of the binding to cells. The role of this protein in adherence was assessed by adherence inhibition tests carried out in vitro with radiolabeled bacteria and cultured epithelial cells. Preincubation of bacteria with antibodies against adhesin 145kDa or against strain c195 resulted in a statistically significant decrease of adherence. These experiments suggest that adherence of S. aureus to MGEC may be critical for colonization.  相似文献   

6.
The association between Staphylococcus aureus chronic mammary gland infection and the resulting immune response expressed by the production of specific IgG and IgA antibodies in blood and milk was studied in Israeli Holstein cows. Specific antibodies of the IgG class were detected in sera of 82.6 per cent of the cows chronically infected by S aureus, while in 17.4 per cent no such antibodies could be detected. Specific IgG antibodies to S aureus were neither detected in sera of cows free of mammary infection nor in those infected with different coagulase-negative staphylococci (CNS) such as S intermedius, S chromogenes or S haemolyticus. In milk, specific IgG antibodies to S aureus were detected only in cows with positive serology. The end point dilutions in the milk were 5 to 30 per cent of that of blood from the same cow. No significant difference in IgG titres was found in the same cow if the quarter was infected with S aureus or not. Specific antibodies to S aureus of the IgA class could not be detected in the sera of any of the cows included in this study. In milk, a specific IgA antibody was detected only in the samples from the S aureus infected quarters in which S aureus was isolated at the time of the experiment. In the same cow, quarters infected by S aureus were found to have a significantly higher IgA titre (P < 0.0001) than that of the non-infected ones.  相似文献   

7.
Background Mammary gland(MG) infections(mastitis) are frequent diseases of dairy cows that affect milk quality, animal welfare and farming profitability. These infections are commonly associated with the bacteria Escherichia coli and Staphylococcus aureus. Different in vitro models have been used to investigate the early response of the MG to bacteria, but the role of the teat in mastitis pathogenesis has received less attention. In this study, we used punchexcised teat tissue as an ex vivo mode...  相似文献   

8.
《中国兽医学报》2016,(8):1307-1311
为研究金黄葡萄球菌(S.aureus)对奶牛乳腺上皮细胞(BMEC)E-cadherin表达的影响,分别采用金黄葡萄球菌及热灭活的金黄葡萄球菌菌液作用于BMEC。金黄葡萄球菌以MOI 100∶1分别感染细胞0.5,1.0,1.5,2.0,2.5,3.0,3.5,4.0h,热灭活的金黄葡萄球菌菌液以不同浓度(0,104,105,106,107,108 CFU/mL)刺激细胞,之后利用实时荧光定量PCR方法和Western blot方法检测E-cadherin mRNA及其蛋白的相对表达量。结果显示:金黄葡萄球菌在感染细胞2h之后,E-cadherin mRNA及其蛋白的表达量较未感染组显著降低(P0.05);不同浓度的热灭活的金黄葡萄球菌菌液处理细胞的E-cadherin mRNA及其蛋白的表达量较对照组显著降低(P0.05)。本研究表明,金黄葡萄球菌及热灭活的金黄葡萄球菌菌液均能够降低奶牛乳腺上皮细胞E-cadherin mRNA及其蛋白的表达。  相似文献   

9.
The incidence of mastitis in dairy cattle is highest at the drying off period and parturition, which are characterized by high levels of the lactogenic hormone prolactin (PRL). One of the most frequently isolated contagious pathogens causing mastitis is Staphylococcus aureus. However, the role of PRL on S. aureus infection in mammary epithelium has not been studied. In this work we evaluated the effect of bovine PRL (bPRL) on S. aureus internalization in a primary culture of bovine mammary epithelial cells (bMEC) and on the expression of cytokine and innate immune response genes. Our data show that 5ng/mL bPRL enhances approximately 3-fold the internalization of S. aureus (ATCC 27543) into bMEC. By RT-PCR analysis, we showed that bPRL is able to up-regulate the expression of tumor necrosis factor-alpha (TNF-alpha), interleukin-1beta (IL-1beta) and inducible nitric oxide synthase (iNOS) mRNAs. However, bPRL together with S. aureus did not modify the expression of TNF-alpha and iNOS mRNAs, while it down-regulated the expression of beta-defensin and IL-1beta mRNAs, as well as nitric oxide production, suggesting that infection and bPRL together can inhibit elements of the host immune response. To our knowledge, this is the first report that shows a role of bPRL during the internalization of S. aureus into bMEC.  相似文献   

10.
The exfoliation rate of mammary epithelial cells (MECs) in milk is affected by physiological, breeding and environmental factors. Little is known about the relationship between the MEC exfoliation into milk and mammary‐infected Staphylococcus aureus (S. aureus) load on bovine mastitis caused by S. aureus. The aim of this study was to investigate the relationship between S. aureus load and the proportion of MEC exfoliation in milk using five substantial bovine mastitis models. In 64 randomly extracted milk samples from udders at 3–21 days after S. aureus infusion, there were various samples with different numbers of S. aureus counts and somatic cell counts. No significant correlations were found between the S. aureus counts and somatic cell count (r = 0.338). In contrast, a significant correlation was noted between S. aureus counts and the proportion of cytokeratin‐positive cells in the milk from the infused udders (r = 0.734, < 0.01). In conclusion, the increasing MEC exfoliation rate in milk from mastitis udders caused by S. aureus may contribute to reduced milk yield.  相似文献   

11.
Staphylococcus aureus is a prolific mastitis-causing bacterium that resides naturally in the environment of the dairy cow. The aim of this study was to profile immune gene expression in tissue from the alveolar, ductal, gland cistern and teat canal regions of the bovine mammary gland following intramammary infection with S. aureus. Quantitative real-time PCR (qPCR) was used to profile expression of innate immune genes including pattern recognition receptors (PRRs), cytokines, antimicrobial peptides (AMPs) and acute phase proteins (APPs). Consistent expression of Toll-like receptors (TLRs) 1-10 and NOD-like receptors (NODs) 1-2 was detected in all four tissue regions. Pro-inflammatory cytokines (IL6, IL17A and IL8) and anti-inflammatory cytokine (IL10) were induced in all 4 tissues. APP (SAA3 and HP) and AMP (DEFB4 and DEFB5) genes showed the greatest induction throughout the mammary gland in response to S. aureus, with particularly high expression in alveolar tissue (SAA3 and HP >133- and >80-fold respectively, P<0.05; DEFB4 and DEFB5 >9- and >27-fold respectively, P<0.05). Collectively, our data show both sentinel and effector immune functions throughout the mammary gland in response to S. aureus challenge.  相似文献   

12.
13.
The objective of this study was to compare the dynamics of innate immune components after intramammary infusion of Staphylococcus aureus (SA) under conditions of high oestrogen and high progesterone in goats. In one group (“E‐group”), controlled internal drug release (CIDR) devices were inserted intravaginally from days ?11 to ?4. Prostaglandin F2α was administered immediately after removal of the CIDR device at day ?3, and then oestradiol benzoate (E) was injected intramuscularly once a day from days ?2 to 3. Heat‐inactivated SA was then administered via intramammary infusion to the left udder at day 0, whilst only saline was infused to the right udder as a control. In a second group (“P‐group”), CIDR devices were inserted intravaginally from days ?3 to 7 and SA was infused at day 0 in the same way as in the E‐group. The milk yield and the concentration of innate immune components (somatic cell count (SCC), lactoferrin (LF), S100A7 and goat ß‐defensin 1 (GBD‐1)) in the milk were measured. Milk yield decreased drastically in both SA and control udders in the E‐group, whereas the P‐group exhibited increased milk yield in both SA and control udders. SCC increased after SA infusion in both E‐ and P‐groups, although it was higher in the E‐group than in the P‐group. There was no significant change in LF concentration in the E‐group, but a decrease was observed in the P‐group. Concentrations of S100A and GBD‐1 were significantly increased after SA infusion in the E‐group but not in the P‐group. These results suggest that E enhances the innate immune response induced by SA in the goat mammary gland. This effect may be due to the reduction in milk yield and upregulation of innate immune components.  相似文献   

14.
Leucocytic response to Staphylococcus aureus infection was observed in the bovine mammary teat duct using transmission electron microscopy. Leucocytes migrating across the stratified squamous epithelium were observed in close association with areas colonised by cocci. Leucocytes gained access across the epithelium to the teat duct lumen by: passage as luminal cells desquamated; migration through degenerate cell cytoplasm; and penetration of cell junctions. The results provide evidence of marked leucocytic infiltration into ductal tissue which may participate in the cellular response to mastitis.  相似文献   

15.
Injection of mammary glands of cows with heat-killed staphylococcal cells, staphylococcal cell walls, or distilled water induced leukocytosis. The magnitude of leukocytic response to staphylococcal antigens in cows of each treatment group depended on the extent of previous experience with staphylococcal cell materials. The 2nd intramammary injection produced greater reactions than did the 1st, and the 1st injection in cows previously parenterally vaccinated with killed cells in oil-water adjuvant produced responses comparable with those elicited by the 2nd intramammary injection in nonvaccinated cows. The implications that these changes have toward understanding the pathogenesis of, and immunity to, staphylococcal mastitis were discussed.  相似文献   

16.
Daily injections of an anti-inflammatory milk-derived factor (MDF) into mice increased resistance to Staphylococcus aureus challenge, and reduced leukocyte infiltration. Intraperitoneal injection of MDF into lactating mice prior to S. aureus intramammary challenge resulted in greater milk secretory activity and less inflammation compared with untreated controls, but had little effect on the number of S. aureus recovered from mammary tissue. Infusion of MDF directly into mouse mammary glands prior to challenge reduced S. aureus recovered after challenge. Incubation of bovine mammary macrophages in medium supplemented with MDF enhanced phagocytosis of opsonized S. aureus. In addition, infusion of 5 mg MDF into uninfected bovine mammary glands 24 h prior to S. aureus challenge resulted in fewer infections (five of ten) than in control quarters (seven of nine). Repeated daily injections of 5 mg MDF into S. aureus-infected quarters increased the percent of mammary neutrophils and decreased the recovery of S. aureus, but did not eliminate infections. Intravenous injection of 8 g MDF into cows resulted in pronounced leukopenia while the accompanying effect on mammary leukocytes was less marked but followed a similar course. Results suggest that the use of MDF in mice enhanced resistance to experimental infection and was beneficial in maintaining mammary secretory activity and reducing inflammation after bacterial challenge. In the cow, MDF promoted phagocytosis in vitro and was effective against challenge when infused intramammarily.  相似文献   

17.
旨在探究SIGIRR对奶牛乳腺上皮细胞(BMECs)TLR4信号通路的负调控作用。构建SIGIRR-pEGFP真核表达载体,脂质体法转染HEK293T及BMECs,荧光显微镜观察及Western blot验证融合蛋白SIGIRR-pEGFP的表达;LPS刺激转染后BMECs,检测TLR4及其信号通路分子IRAK1、IRAK4和TRAF6的变化,以及下游炎性因子IL-6、IL-8、IL-1β和TNF-α的表达量。结果显示,成功构建SIGIRR-pEGFP真核表达载体,荧光检测重组质粒转染到HEK293T和BMECs中;Western blot鉴定融合蛋白SIGIRR-pEGFP表达正确;重组质粒转染BMECs后,SIGIRR表达量较转染空载质粒组及空白未转染组显著升高(P0.01);炎性因子IL-6、IL-8、IL-1β、TNF-α、TLR4及下游信号分子IRAK1、IRAK4、TRAF6表达量显著降低(P0.01),转染空载质粒组与空白未转染组相比仅IRAK1表达量有差异(P0.05)。结果表明,本试验通过研究牛SIGIRR在BMECs中的作用,证实SIGIRR基因具有炎性负调控LPS-TLR4信号通路的作用,具有潜力成为临床治疗奶牛乳腺炎的新靶标。  相似文献   

18.
Vitamin D has immunomodulatory functions regulating the expression of host defense genes. The aim of this study was to determine the effect of cholecalciferol (vitamin D3) on S. aureus internalization into bovine mammary epithelial cells (bMEC) and antimicrobial peptide (AP) mRNA expression. Cholecalciferol (1-200nM) did not affect S. aureus growth and bMEC viability; but it reduced bacterial internalization into bMEC (15-74%). Also, bMEC showed a basal expression of all AP genes evaluated, which were induced by S. aureus. Cholecalciferol alone or together with bacteria diminished tracheal antimicrobial peptide (TAP) and bovine neutrophil β-defensin (BNBD) 5 mRNA expression; while alone induced the expression of lingual antimicrobial peptide (LAP), bovine β-defensin 1 (DEFB1) and bovine psoriasin (S100A7), which was inhibited in the presence of S. aureus. This compound (50nM) increased BNBD10 mRNA expression coinciding with the greatest reduction in S. aureus internalization. Genes of vitamin D pathway (25-hydroxylase and 1 α-hydroxylase) show basal expression, which was induced by cholecalciferol or bacteria. S. aureus induced vitamin D receptor (VDR) mRNA expression, but not in the presence of cholecalciferol. In conclusion, cholecalciferol can reduce S. aureus internalization and differentially regulates AP expression in bMEC. Thus, vitamin D could be an effective innate immunity modulator in mammary gland, which leads to a better defense against bacterial infection.  相似文献   

19.
An assay for the adhesion of tritiated thymidine-labelled Staphylococcus aureus and Escherichia coli to bovine mammary ductular epithelial cell lines was developed. The relative adhesion of 15 strains of S. aureus to these cell lines was examined. Four strains did not adhere and the remaining 11 adhered at variable levels. Adhesion to different cell lines was generally similar. Adhesion to freshly collected bovine mammary epithelial cells was significantly greater than that to cells maintained in tissue culture. The system described was demonstrated to be a suitable model for studying adhesion of mastitis-causing organisms to bovine mammary epithelial cells.  相似文献   

20.
Maedi-visna virus infection of ovine mammary epithelial cells   总被引:3,自引:0,他引:3  
The aim of this work was to perform a complete study of maedi-visna virus (MVV) infected mammary glands of naturally-infected sheep, and to determine if cells other than macrophages undergo a productive viral infection in this organ. Fifteen seropositive and two seronegative ewes were selected from MVV-infected flocks on the basis of clinical indurative mastitis and three sheep from an MVV-free flock. Within the mammary gland, MVV-positive cells were located by immunohistochemistry in the stroma and the epithelial alveolar barrier, most likely the ovine mammary epithelial cells (OMEC) of the acini. In situ hybridization confirmed these findings. Ultrastructural studies showed the presence of lentivirus-like particles budding off the cell surface in the alveolar barrier and also free in the acinar lumen. The presence of mammary histopathological lesions and MVV together with clear indications of productive infection (demonstration of a cytopathic effect in OMEC cultures and infection of co-cultures) were observed in the 15 seropositive and one of the seronegative sheep from the infected flock. These findings demonstrate that the OMEC were infected in vivo and probably underwent productive infection when studied ex-vivo. The OMEC of MVV-free sheep, which had subsequently been infected in vitro with MVV, also showed productive infection when challenged in vitro, confirming the replication of MVV in OMEC in vitro. The presence of MVV-infected OMEC in the mammary gland from infected animals, the productive infection in these OMEC and the release of lentiviral particles to the acinar lumen may have relevance in the pathogenesis and transmission of MVV infection.  相似文献   

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