首页> 外文期刊>Journal of Parasitology >REDUCED CEREBRAL INFECTION OF NEOSPORA CANINUM–INFECTED MICE AFTER VACCINATION WITH RECOMBINANT MICRONEME PROTEIN NCMIC3 AND RIBI ADJUVANT
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REDUCED CEREBRAL INFECTION OF NEOSPORA CANINUM–INFECTED MICE AFTER VACCINATION WITH RECOMBINANT MICRONEME PROTEIN NCMIC3 AND RIBI ADJUVANT

机译:接种重组细小分子蛋白NCMIC3和RIBI佐剂疫苗后,减少新孢子虫感染的小鼠的脑部感染

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C57BL/6 mice were vaccinated with a bacterially expressed and purified polyhistidine-tagged full-length version of the microneme protein NcMIC3 (recNcMIC3) emulsified in Ribi Adjuvant System (RAS). Subsequently, they were challenged by intraperitoneal inoculation of 2 × 106 live Neospora caninum tachyzoites. As controls, groups of mice received phosphate-buffered saline (PBS)-RAS alone (adjuvant control) or were treated with PBS before infection (infection control). The protective effect of vaccination was assessed by Neospora-specific polymerase chain reaction (PCR), immunohistochemical investigation of brain tissue, and serological means (enzyme-linked immunosorbent assay). Assessment by PCR performed on DNA from different organs revealed that in all treatment groups parasite DNA could only be detected in brain tissue. According to the PCR results, the recNcMIC3 vaccine conferred protection to 75% of mice (n = 16 in 2 independent experiments), whereas application of PBS-RAS and of PBS alone resulted in protection of 12.5% and 0% of mice, respectively (n = 16 as above). Mice in the PBS-treated infection control group were affected by evident clinical signs of neosporosis starting on day 6 postinfection (p.i.). Conversely, none of the animals treated with either PBS-RAS or recNcMIC3 exhibited any symptoms until day 21 p.i. Immunohistochemical staining of paraffin-embedded brain tissue sections confirmed the protective effect of recNcMIC3 vaccination. Quantitative Neospora-specific real-time PCR revealed that infection intensities were lower in the brain tissues of recNcMIC3-vaccinated mice compared with PBS-RAS–treated adjuvant control mice. Serological analysis showed that the protective effect observed in recNcMIC3-vaccinated mice was associated with a Th2-type IgG1 antibody response directed against native NcMIC3 and a mixed IgG1–IgG2a antibody response directed against the recombinant antigen itself. Taken together, these results demonstrated that recombinant NcMIC3 vaccine confers a significant protectivity against experimentally induced cerebral neosporosis in mice.
机译:给C57BL / 6小鼠接种在Ribi佐剂系统(RAS)中乳化的细菌表达并纯化的,带有多组氨酸标签的全长版本的微nemene蛋白NcMIC3(recNcMIC3)。随后,通过腹膜内接种2×106活新孢子虫速殖子对它们进行攻击。作为对照,小鼠组单独接受磷酸盐缓冲盐水(PBS)-RAS(佐剂对照)或在感染前用PBS治疗(感染对照)。通过新孢子虫特异性聚合酶链反应(PCR),脑组织的免疫组织化学研究和血清学方法(酶联免疫吸附测定)评估了疫苗的保护作用。通过PCR对来自不同器官的DNA进行的评估显示,在所有治疗组中,寄生虫DNA只能在脑组织中检测到。根据PCR结果,recNcMIC3疫苗可为75%的小鼠提供保护(两次独立实验中的n = 16),而单独应用PBS-RAS和PBS则分别可保护12.5%和0%的小鼠( n = 16(如上所述)。从感染后第6天开始,经PBS处理的感染对照组的小鼠受到新孢子虫病的明显临床体征的影响(p.i.)。相反,用PBS-RAS或recNcMIC3治疗的动物直到下午21天都没有表现出任何症状。石蜡包埋的脑组织切片的免疫组织化学染色证实了recNcMIC3疫苗的保护作用。 Neospora实时定量定量PCR显示,与PBS-RAS处理的佐剂对照小鼠相比,recNcMIC3疫苗接种小鼠的脑组织感染强度较低。血清学分析表明,在接种recNcMIC3的小鼠中观察到的保护作用与针对天然NcMIC3的Th2型IgG1抗体反应和针对重组抗原本身的IgG1-IgG2a混合抗体反应相关。综上所述,这些结果证明重组NcMIC3疫苗赋予小鼠抗实验性脑新孢子虫病的显着保护性。

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