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Bacterial membranes enhance the immunogenicity and protective capacity of the surface exposed tick Subolesin-Anaplasma marginale MSP1a chimeric antigen

机译:细菌膜增强表面暴露的虱子油质-无形体边缘MSP1a嵌合抗原的免疫原性和保护能力

摘要

Ticks are vectors of diseases that affect humans and animals worldwide. Tick vaccines have been proposed as a cost-effective and environmentally sound alternative for tick control. Recently, the Rhipicephalus microplus Subolesin (SUB)-. Anaplasma marginale MSP1a chimeric antigen was produced in Escherichia coli as membrane-bound and exposed protein and used to protect vaccinated cattle against tick infestations. In this research, lipidomics and proteomics characterization of the E. coli membrane-bound SUB-MSP1a antigen showed the presence of components with potential adjuvant effect. Furthermore, vaccination with membrane-free SUB-MSP1a and bacterial membranes containing SUB-MSP1a showed that bacterial membranes enhance the immunogenicity of the SUB-MSP1a antigen in animal models. R. microplus female ticks were capillary-fed with sera from pigs orally immunized with membrane-free SUB, membrane bound SUB-MSP1a and saline control. Ticks ingested antibodies added to the blood meal and the effect of these antibodies on reduction of tick weight was shown for membrane bound SUB-MSP1a but not SUB when compared to control. Using the simple and cost-effective process developed for the purification of membrane-bound SUB-MSP1a, endotoxin levels were within limits accepted for recombinant vaccines. These results provide further support for the development of tick vaccines using E. coli membranes exposing chimeric antigens such as SUB-MSP1a.
机译:壁虱是影响全世界人类和动物的疾病媒介。壁虱疫苗已被提议作为一种经济有效且对环境无害的壁虱控制替代品。最近,小头蛇脑沙门氏菌素(SUB)-。边缘无浆膜MSP1a嵌合抗原是在大肠杆菌中产生的膜结合蛋白和暴露蛋白,用于保护接种牛免于虱子侵扰。在这项研究中,大肠杆菌膜结合的SUB-MSP1a抗原的脂质组学和蛋白质组学表征表明存在具有潜在佐剂作用的成分。此外,用无膜的SUB-MSP1a和含有SUB-MSP1a的细菌膜进行疫苗接种表明,细菌膜可增强SUB-MSP1a抗原在动物模型中的免疫原性。用无血清SUB,膜结合的SUB-MSP1a和生理盐水口服免疫的猪血清,用毛细血管饲喂R. microplus雌性壁虱。与对照相比,对于膜结合的SUB-MSP1a,显示了cks虫摄入的抗体已添加到血粉中,并且这些抗体对tick虫体重减轻的作用已显示出来,但未显示SUB。使用开发的用于纯化膜结合SUB-MSP1a的简单且经济高效的方法,内毒素水平在重组疫苗可接受的范围内。这些结果为使用暴露于嵌合抗原(例如SUB-MSP1a)的大肠杆菌膜开发壁虱疫苗提供了进一步的支持。

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