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1.
In this study, primary and immortalized bovine intestinal epithelial cells (BIECs) were characterized for the expression of surface carbohydrate moieties. Primary BIEC-c4 cells showed staining greater than 90 % for 16 lectins but less than 50 % staining for four lectins. Immortalized BIECs showed significantly different lectin binding profile for few lectins compared to BIEC-c4 cells. BIEC-c4 cells were studied for infectivity to E. coli, Salmonella enterica, bovine rotavirus, bovine coronavirus, and bovine viral diarrhea virus. Bovine strain E. coli B41 adhered to BIEC-c4 cells and Salmonella strains S. Dublin and S. Mbandaka showed strong cell invasion. BIEC-c4 cells were susceptible to bovine rotavirus. LPS stimulation upregulated IL-10, IL-8, and IL-6 expression and Poly I:C upregulated TLR 8 and TLR 9 expression. This study provides important knowledge on the glycoconjugate expression profile of primary and immortalized BIECs and infectivity and immune responses of primary BIECs to bacterial and viral pathogens or ligands.  相似文献   
2.
本试验旨在研究沙蒿多糖不同组合制剂对滩羊羔羊瘤胃菌群多样性的影响。选择健康、体重相近的断奶滩羊公羔60只,按体重随机分为4个组,每组15只羊。对照组饲喂基础饲粮,试验1组、试验2组和试验3组分别饲喂在基础饲粮中添加5.5 g/d沙蒿多糖+5.5 g/d包被丁酸钠、5.5 g/d沙蒿多糖+5.5 g/d丁酸甘油酯和5.5 g/d沙蒿多糖+1.1 g/d莫能菌素的试验饲粮。预试期为15 d,正试期为60 d。结果表明:1)与对照组相比,试验1组和试验2组滩羊瘤胃液乙酸、丁酸、总挥发性脂肪酸浓度和乙酸比例显著提高(P<0.05)。2)试验2组的Chao1指数显著高于对照组(P<0.05),试验2组的Shannon指数和Simpson指数有高于对照组的趋势(0.05≤P<0.10)。3)门水平上,与对照组相比,试验1组瘤胃液中软壁菌门的相对丰度显著升高(P<0.05),厚壁菌门和丝状杆菌门的相对丰度有升高的趋势(0.05≤P<0.10);试验2组瘤胃液中绿弯菌门的相对丰度显著升高(P<0.05),而疣微菌门的相对丰度有升高的趋势(0.05≤P<0.10);试验3组瘤胃液中蓝藻菌门和互养菌门的相对丰度显著升高(P<0.05)。4)属水平上,与对照组相比,试验1组瘤胃液中理研菌科RC9的相对丰度显著降低(P<0.05),解琥珀酸菌属和丹毒丝菌属的相对丰度显著升高(P<0.05);试验2组瘤胃液中Sharpea的相对丰度显著降低(P<0.05),假丁酸弧菌属的相对丰度显著升高(P<0.05);试验3组瘤胃液中理研菌科RC9和Sharpea的相对丰度显著降低(P<0.05),互营球菌属的相对丰度有增加的趋势(0.05≤P<0.10)。由此可见,饲粮添加沙蒿多糖组合制剂均可提高滩羊羔羊菌群多样性,改善瘤胃微生物区系,且以添加沙蒿多糖+包被丁酸钠的效果最好。  相似文献   
3.
Peritrophic matrix/membrane (PM) critically prevents the midgut of insects from external invasion by microbes. The proteins in the peritrophic membrane are its major structural components. Additionally, they determine the formation and function of this membrane. However, the role of PM proteins in immune regulation is unclear. Herein, we isolated a novel PM protein (MdPM-17) from Musca domestica larvae. Further, the function of MdPM-17 in regulating host innate immunity was identified. Results showed that the cDNA of MdPM-17 full is 635 bp in length. Moreover, it consists of a 477-bp open reading frame encoding 158 amino acid residues. These amino acid residues are composed of two Chitin-binding type-2 domain (ChtBD2) and 19 amino acids as a signal peptide. Moreover, tissue distribution analysis indicates that MdPM-17 was enriched expressed in midgut, and moderate levels in the fat body, foregut, and malpighian tubule. Notably, MdPM-17 recombinant protein showed high chitin-binding capacity, thus belongs to the Class III PM protein group. MdPM-17 protein silencing via RNA interference resulted in the expression of antimicrobial peptide (defensin, cecropins, and diptericin) genes, and this occurred after oral inoculation with exogenous microbes Escherichia coli (Enterobacteriales:Enterobacteriaceae), Staphylococcus aureus (Bacillales:Staphylococcaceae), and Candida albicans (Endomycetales:Saccharomycetaceae)). Therefore, all the antimicrobial peptide (AMP) gene expression levels are high in MdPM-17-depleted larvae during microbial infection compared to controls. Consequently, these findings indicate that MdPM-17 protein is associated with the antibacterial response from the housefly.  相似文献   
4.
5.
肠道炎症已成为我国社会健康的难题和挑战,其发病率在我国迅速增长。肠道炎症发病原因复杂,目前尚缺乏有效的缓解药物,因此加强肠道炎症有效缓解物质的研发至关重要。低聚半乳糖(galactooligosaccharide,GOS)是一种食疗益生性较优的乳源功能性低聚糖,能够有效促进肠道内益生菌的增殖,改变肠道菌群结构,刺激免疫应答,进而改善肠黏膜屏障功能,缓解肠道炎症。本文综述近年来国内外有关肠道炎症及GOS干预缓解肠道炎症作用的研究进展,并对其应用前景进行展望,为此领域的研究提供科学依据。  相似文献   
6.
Marine-derived substances are known for their beneficial influences on aquatic animals’ performances and are recommended to improve intestinal health, immunity, and anti-oxidative status. The present study investigates the role of chitosan nanoparticles on the intestinal histo-morphometrical features in association with the health and immune response of Grey Mullet (Liza ramada). Chitosan nanoparticles are included in the diets at 0, 0.5, 1, and 2 g/kg and introduced to fish in a successive feeding trial for eight weeks. The final body weight (FBW), weight gain (WG), and specific growth rate (SGR) parameters are significantly increased while feed conversion ratio (FCR) decreases by chitosan nanoparticles compared to the control (p < 0.05). The morphometric analysis of the intestines reveals a significant improvement in villus height, villus width, and the number of goblet cells in chitosan-treated groups in a dose-dependent manner. Additionally, there is a positive correlation between the thickness of the enterocyte brush border and the chitosan dose, referring to an increasing absorptive activity. Histologically, the intestinal wall of Grey Mullet consists of four layers; mucosa, sub-mucosa, tunica muscularis (muscular layers), and serosa. The histological examination of the L. ramada intestine shows a normal histo-morphology. The epithelial layer of intestinal mucosa is thrown into elongated finger-like projections, the intestinal villi. The values of hemoglobin, hematocrit, red blood cells (RBCs), total protein (TP), albumin, and globulin are significantly increased in fish fed 1, and 2 g/kg of chitosan nanoparticles compared to fish fed 0 and 0.5 g/kg (p < 0.05). The highest levels of TP and albumin are observed in fish fed 1 g/kg diet (p < 0.05). The lysozyme activity and phagocytic index are significantly enhanced by feeding chitosan nanoparticles at 0.5, 1, and 2 g/kg, whereas the phagocytic activity is improved in fish fed 1 and 2 g/kg (p < 0.05). The highest lysozyme activity and phagocytic index are observed in fish fed 1 g/kg. SOD is significantly activated by feeding chitosan nanoparticles at 1 g/kg. Simultaneously, glutathione peroxidase (GPx) and catalase (CAT) activities also are enhanced by feeding chitosan at 1 and 2 g/kg, compared to fish fed 0 and 0.5 g/kg (p < 0.05). The highest GPx and CAT activities are observed in fish fed 1 g/kg (p < 0.05). Conversely, the malondialdehyde (MDA) levels are decreased by feeding chitosan at 1 and 2 g/kg, with the lowest being in fish fed 1 g/kg (p < 0.05). To summarize, the results elucidate that L. ramada fed dietary chitosan nanoparticles have a marked growth rate, immune response, and anti-oxidative response. These improvements are attributed to the potential role of chitosan nanoparticles in enhancing intestinal histo-morphometry and intestinal health. These results soundly support the possibility of using chitosan nanoparticles at 1–2 g/kg as a feasible functional supplement for aquatic animals.  相似文献   
7.
为了能改善水质、渔业增殖和修复生态环境,EM菌的应用得到了广泛的关注,成为近几年研究的热点。鉴于此,本研究系统梳理了EM菌的定义及来源,综述了国内外近几十年EM菌在水产养殖中的作用效果及其作用机理,阐述了影响EM菌作用效果的因素等;发现EM菌在调控微生物生态结构、降低水环境中有害物质、提高免疫、增重增产等方面有着显著的效果,但EM菌技术的基础理论研究还比较薄弱,且生产技术及应用过程等还存在着不足。因此今后应提高生产技术,建立和提高筛选系统,并开发EM菌在水产养殖研究和应用的新领域,为水产养殖创造更大的经济价值,并为可持续养殖提供可能。  相似文献   
8.
试验旨在探究日粮中添加巨菌草(Pennisetum giganteum)对七彩山鸡(Phasianus colchicus)生长性能、免疫器官以及肠绒毛形态的影响。试验选取1周龄健康的七彩山鸡(母)210只,随机分为1个对照组(0%组)和4个饲料处理组,每组3个平行。4个饲料处理组配制时,分别添加4%、8%、12%、16%的巨菌草添加剂于基础饲料中。结果表明,与0%组相比,12%组七彩山鸡的平均体重和平均日采食量显著增加(P<0.05);4%、8%、12%组平均日增重显著大于16%组(P<0.05);8%组料重比显著降低(P<0.05);饲料处理组免疫器官指数中肝脏、脾脏指数均在0%组的基础上有所增加,但差异不显著(P>0.05);8%的巨菌草添加剂可显著增加七彩山鸡肠道的绒毛长度(P<0.05),隐窝深度显著降低(P<0.05),扩大肠道黏膜吸收面积。说明日粮中添加巨菌草可以提高七彩山鸡肠道对营养的吸收能力,一定程度上改善七彩山鸡生长性能和免疫性能。  相似文献   
9.
肠道微生物是当前研究的热点,鹅肠道微生物的组成与丰富程度不仅和鹅的生长性能密切相关,而且在鹅机体生理活动中具有一定的调节作用,同时与疾病的发生和发展具有密切的联系。通过研究鹅肠道微生物的调节,从而达到促生长或者治疗疾病的目的,是目前鹅研究探寻的新方向。文章主要综述了鹅肠道微生物的组成及其变化规律,以期为鹅产业生物饲料的开发应用、研发推广新型安全高效饲料添加剂提供新思路。  相似文献   
10.
This study aimed to investigate the protective effects and underlying mechanism of seaweed polysaccharide (SWP) on intestinal epithelial barrier dysfunction induced by E. coli in an IPEC-J2 model. A preliminary study was done to screen optimum SWP concentrations by cell viability, cytotoxicity, apoptosis and proliferation evaluation. The regular study was conducted to evaluate the protective effects of SWP against E. coli challenge via the analysis of transepithelial electrical resistance (TEER), tight junction proteins, NF-κB signalling pathway, proinflammatory cytokines and the E. coli adhesion and invasion. Our results show that 4 h E. coli challenge down-regulated tight junction proteins expression, decreased TEER, activated NF-κB signalling pathway and increased proinflammatory response, which indicates that the E. coli infection model was well-established. Pre-treatment with 240 μg/ml SWP for 24 h alleviated the 4 h E. coli -induced intestinal epithelial barrier dysfunction, as evidenced by the up-regulated expression of Occludin, Claudin-1 and ZO-1 at both mRNA and protein level and the increased TEER of IPEC-J2 cells. Pre-incubation with 240 μg/ml SWP for 24 h inhibited the activation of the NF-κB signalling pathway by 4 h E. coli challenge, including the decreased mRNA expression of TLR-4, MyD88, IκBα, p-65, as well as the reduced ratio of protein expression of p-p65/p65. Also, pre-treatment with 240 μg/ml SWP for 24 h decreased proinflammatory response (IL-6 and TNF-α) induced by 4 h E. coli challenge and decreased the E. coli adhesion and invasion. In conclusion, SWP mitigated intestinal barrier dysfunction caused by E. coli through NF-κB pathway in IPEC-J2 cells and 240 μg/ml SWP exhibited better effect. Our results also provide a fundamental basis for SWP in reducing post-weaning diarrhoea of weaned piglets, especially under E. coli -infected or in-feed antibiotic-free conditions.  相似文献   
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