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Membrane vesicles from Piscirickettsia salmonis induce protective immunity and reduce development of salmonid rickettsial septicemia in an adult zebrafish model

机译:来自Piscirickettsia Salmonis的膜囊泡诱导了在成年斑马鱼模型中的保护性免疫力,减少鲑鱼羊皮菌血症的发展

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摘要

Infections caused by the facultative intracellular bacterial pathogen Piscirickettsia salmonis remains an unsolved problem for the aquaculture as no efficient treatments have been developed. As a result, substantial amounts of antibiotic have been used to limit salmonid rickettsial septicemia (SRS) disease outbreaks. The antibiotic usage has not reduced the occurrence, but lead to an increase in resistant strains, underlining the need for new treatment strategies. P. salmonis produce membrane vesicles (MVs); small spherical structures know to contain a variety of bacterial components, including proteins, lipopolysaccharides (LPS), DNA and RNA. MVs mimics' in many aspects their mother cell, and has been reported as alternative vaccine candidates. Here, MVs from P. salmonis was isolated and evaluated as a vaccine candidate against SRS in an adult zebrafish infection model. When zebrafish was immunized with MVs they were protected from subsequent challenge with a lethal dose of P. salmonis. Histological analysis showed a reduced bacterial load upon challenge in the MV immunized group, and the mRNA expression levels of several immune related genes altered, including mpeg1.1, tnf alpha, il1b, i110 and il6. The MVs induced the secretion of IgM upon immunization, indicating an immunogenic effect of the vesicles. Taken together, the data demonstrate a vaccine potential of MVs against P. salmonis. (C) 2017 The Author(s). Published by Elsevier Ltd.
机译:由兼性细胞内细菌病原体Piscirickettsia salmonis引起的感染仍然是水产养殖的未解决问题,因为没有开发有效的治疗。结果,大量的抗生素已经用于限制鲑鱼霉素败血症(SRS)疾病爆发。抗生素使用量并未降低发生,但导致抗性菌株的增加,强调了对新的治疗策略的需求。 P. Salmonis生产膜囊泡(MVS);小球形结构知道含有各种细菌组分,包括蛋白质,脂多糖(LPS),DNA和RNA。 MVS模仿在许多方面,他们的母细胞,并被报告为替代疫苗候选人。这里,来自P. Salmonis的MVS被分离,并评估为成年斑马鱼类感染模型中的疫苗候选者。当斑马鱼用mV免疫斑马鱼时,它们受到随后的攻击,致死剂量的p. salmonis。组织学分析显示在MV免疫基团中攻击时的细菌载荷减少,并且改变了几种免疫相关基因的mRNA表达水平,包括MPEG1.1,TNFα,IL1B,I110和IL6。 MVS在免疫后诱导IgM的分泌,表明囊泡的免疫原性作用。携带,数据表明了对P. Salmonis的MVS的疫苗潜力。 (c)2017年作者。 elsevier有限公司出版

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