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首页> 外文期刊>BMC Microbiology >Lactic acid bacteria that activate immune gene expression in Caenorhabditis elegans can antagonise Campylobacter jejuni infection in nematodes, chickens and mice
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Lactic acid bacteria that activate immune gene expression in Caenorhabditis elegans can antagonise Campylobacter jejuni infection in nematodes, chickens and mice

机译:激活Caenorhabdise秀丽隐杆线虫的免疫基因表达的乳酸菌可以在线虫,鸡和小鼠中拮抗Jejuni感染

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Campylobacter jejuni is the major micro-bacillary pathogen responsible for human coloenteritis. Lactic acid bacteria (LAB) have been shown to protect against Campylobacter infection. However, LAB with a good ability to inhibit the growth of C. jejuni in vitro are less effective in animals and animal models, and have the disadvantages of high cost, a long cycle, cumbersome operation and insignificant immune response indicators. Caenorhabditis elegans is increasingly used to screen probiotics for their anti-pathogenic properties. However, no research on the use of C. elegans to screen for probiotic candidates antagonistic to C. jejuni has been conducted to date. This study established a lifespan model of C. elegans, enabling the preselection of LAB to counter C. jejuni infection. A potential protective mechanism of LAB was identified. Some distinct LAB species offered a high level of protection to C. elegans against C. jejuni. The LAB strains with a high protection rate reduced the load of C. jejuni in C. elegans. The transcription of antibacterial peptide genes, MAPK and Daf-16 signalling pathway-related genes was elevated using the LAB isolates with a high protection rate. The reliability of the lifespan model of C. elegans was verified using mice and chickens infected with C. jejuni. The results showed that different LAB had different abilities to protect C. elegans against C. jejuni. C. elegans provides a reliable model for researchers to screen for LAB that are antagonistic to C. jejuni on a large scale.
机译:Campylobacter Jejuni是负责人类骚动炎的主要微生物病原体。已显示乳酸菌(实验室)以防止弯曲杆菌感染。然而,具有良好抑制C.Jejuni在体外生长的实验室在动物和动物模型中的效果较小,并且具有高成本,长周期,繁琐的操作和微不足道的免疫应答指标的缺点。 CaenorhabditiseDellys越来越多地用于筛选益生菌的抗致病性能。然而,没有关于使用C.秀丽隐杆线虫对益生菌候选者对C. Jejuni进行拮抗的研究。本研究建立了秀丽隐杆线虫的寿命模型,使实验室的预选能够计数器C. jejuni感染。确定了实验室的潜在保护机制。一些独特的实验室物种为C. Jejuni的C. Elegans提供了高水平的保护。实验室菌株具有高保率降低了C.秀丽隐杆线的C. Jejuni的负荷。使用具有高保护速率的实验室分离物升高了抗菌肽基因,MAPK和DAF-16信号传导途径相关基因的转录。使用C. Jejuni感染的小鼠和鸡来验证C.杆状杆菌的寿命模型的可靠性。结果表明,不同的实验室具有不同的能力来保护C.秀丽隐杆线虫对C. Jejuni。 C. elegans为研究人员提供了一个可靠的模型,用于屏幕上的实验室,这些实验室是大规模的C. Jejuni拮抗的实验室。

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