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Hydrostatic Filtration Enables Large-Scale Production of Outer Membrane Vesicles That Effectively Protect Chickens against Gallibacterium anatis

机译:静水过滤使大规模生产外膜囊泡成为可能从而有效地保护鸡只免受鸡痢疾。

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摘要

is a Gram-negative opportunistic avian pathogen representing an emerging threat to poultry meat and egg production worldwide. To date, no vaccine able to effectively prevent the morbidity associated with infections has been developed yet. Our group previously reported that inoculation of different combinations of outer membrane vesicles (OMVs), FlfA and GtxA-N proteins is effective in preventing lesions caused by infections in layer chickens. Here we report the testing of the efficacy as vaccine prototypes of OMVs isolated by hydrostatic filtration, a simple technique that allows the cost-effective isolation of high yields of OMVs. Layer chickens were immunized with OMVs alone or in combination with FlfA and/or GtxA-N proteins. Subsequent challenge with a heterologous strain showed that immunization with OMVs alone could significantly reduce the lesions following a infection. A second study was carried out to characterize the dose-response (0.25, 2.5 and 25 µg) relationship of OMVs as immunogens, showing that 2.5 μg of OMVs represent the optimal dose to elicit protection in the immunized animals after a similar challenge. Additionally, administration of ≥2.5 μg of OMVs induced specific IgY titers and possibly vertical transfer of immunity.
机译:是革兰氏阴性机会禽病原体,代表着对全球禽肉和蛋类生产的新威胁。迄今为止,尚未开发出能够有效预防与感染相关的发病率的疫苗。我们的小组先前曾报道,接种不同组合的外膜囊泡(OMV),FlfA和GtxA-N蛋白可有效预防由蛋鸡感染引起的病变。在这里,我们报告了通过静水压过滤分离的OMV作为疫苗原型的功效的测试,这是一种简单的技术,可经济高效地分离高产量的OMV。单独用OMV或与FlfA和/或GtxA-N蛋白联合免疫层鸡。随后用异源菌株攻击表明,仅用OMV免疫可显着减少感染后的病变。进行了第二项研究,以表征OMV作为免疫原的剂量反应(0.25、2.5和25μg)关系,显示2.5μgOMV代表在类似攻击后在免疫动物中引发保护的最佳剂量。此外,施用≥2.5μg的OMV会诱导特异性IgY滴度,并可能导致免疫力的垂直转移。

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