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首页> 外文期刊>Canadian journal of microbiology >Protective immune responses in mice induced by intramuscular and intranasal immunization with a Mycoplasma pneumoniae P1C DNA vaccine
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Protective immune responses in mice induced by intramuscular and intranasal immunization with a Mycoplasma pneumoniae P1C DNA vaccine

机译:肺炎支原体P1C DNA疫苗肌肉和鼻内免疫诱导的小鼠保护性免疫应答

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Mycoplasma pneumoniae is an important causative agent of atypical pneumonia. This study was to determine the ability of a DNA expression vector, which encodes the carboxy terminal region of the M. pneumoniae P1 protein (P1C), to induce humoral and cellular immune responses and to protect against M. pneumoniae infection in BALB/c mice. Mice were immunized with pcDNA3.1/P1C by either intramuscular injection (i.m.) or intranasal inoculation (i.n.). Our results showed that p1c DNA immunization generates detectable antibodies specific to M. pneumoniae, and elicits high levels of IgG1, IgG2a, and IgG2b isotypes (P < 0.01). The levels of IFN-γ and IL-4 in spleen cells of the immunized mice were significantly elevated by immunization via both the i.m. and i.n. methods. Moreover, p1c DNA-immunized mice exhibited detectable protection against M. pneumoniae infection. The lung tissue inflammation was relieved and the histopathologic score (HPS) of pcDNA3.1/P1C-immunized mice was significantly decreased than those in phosphate-buffed saline (PBS) or vaccine-vector-immunized mice (P < 0.01), whereas there were no significant differences in HPS between i.m. and i.n. vaccination (P > 0.05). Our results suggest that pcDNA3.1/P1C could be useful for developing a vaccine against M. pneumoniae infection.
机译:肺炎支原体是非典型肺炎的重要病原。这项研究的目的是确定编码肺炎支原体P1蛋白(P1C)羧基末端区域的DNA表达载体在BALB / c小鼠中诱导体液和细胞免疫应答以及预防肺炎支原体感染的能力。 。通过肌内注射(i.m.)或鼻内接种(i.n.)用pcDNA3.1 / P1C免疫小鼠。我们的结果表明,p1c DNA免疫产生了可检测到的肺炎支原体特异性抗体,并引起高水平的IgG1,IgG2a和IgG2b同型(P <0.01)。通过两次免疫,免疫小鼠的脾细胞中IFN-γ和IL-4的水平显着升高。和i.n.方法。此外,p1c DNA免疫的小鼠对肺炎支原体感染表现出可检测的保护作用。肺组织炎症得到缓解,pcDNA3.1 / P1C免疫小鼠的组织病理学评分(HPS)显着降低,而磷酸化生理盐水(PBS)或疫苗载体免疫的小鼠(P <0.01)即时消息之间的HPS没有显着差异和i.n.疫苗接种(P> 0.05)。我们的结果表明,pcDNA3.1 / P1C可用于开发抗肺炎支原体感染的疫苗。

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