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Analysis of vaccine- and infection-induced immune responses contributing to suppression of blood-stage malaria in the Plasmodium yoelii rodent model.

机译:在约氏疟原虫啮齿动物模型中分析疫苗和感染诱导的免疫反应,有助于抑制血液阶段的疟疾。

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摘要

Immunization with Plasmodium yoelii merozoite surface protein-8 (PyMSP-8) protects mice from lethal malaria but does not prevent infection. Using this MSP-based vaccine model, vaccine- and infection-induced immune responses that contribute to protection were investigated. Analysis of prechallenge sera from rPyMSP-8 immunized C57BL/6 and BALB/c mice revealed high and comparable levels of antigen-specific IgG but differences in isotype profile and specificity for conformational epitopes were noted. As both strains of mice were similarly protected against P. yoelii, vaccine-induced responses did not correlate with protection. However, passive immunization studies suggested that protection resulted from differing immune responses. Studies with cytokine-deficient mice showed that protection was induced by immunization of C57BL/6 mice only when IL-4 and IFN-gamma were both present. In BALB/c mice, the absence of either IL-4 or IFN-gamma led to predictable shifts in the IgG isotype profile but did not reduce the magnitude of the antibody response induced by rPyMSP-8 immunization. Immunized IL-4-/- BALB/c mice were protected against P. yoelii. Surprisingly, immunized IFN-gamma -/- BALB/c mice initially controlled parasite growth but eventually succumbed to infection. Analysis of cytokine production revealed that P. yoelii infection induced two distinct peaks of IFN-gamma in rPyMSP-8 immunized BALB/c mice. Further evaluation determined that it was the early production of IFN-gamma that was necessary for protection in immunized and challenged mice. Maximal parasite growth in rPyMSP-8 immunized mice occurred during a period of sustained TGF-beta production. TGF-beta neutralization did not lead to an uncontrolled, pathologic proinflammatory response but resulted in modestly improved protection in rPyMSP-8 immunized mice. There were no significant differences in antibody or cytokine responses between isotype- and anti-TGF-beta-treated, rPyMSP-8 immunized mice. Interestingly, rPyMSP-8 immunized IFN-gamma -/- BALB/c mice, which normally succumb to lethal P. yoelii malaria, were protected when TGF-beta was neutralized. These data suggest that in rPyMSP-8 immunized mice, TGF-beta is not necessary for down-modulating inflammatory responses and is detrimental to disease outcome in the absence of IFN-gamma. Combined, the data indicate that suppression of lethal P. yoelii in rPyMSP-8 immunized mice requires high titers of PyMSP-8 antibody and infection-induced IFN-gamma which is associated with development of the protective response to additional parasite antigens.
机译:约氏疟原虫裂殖子表面蛋白8(PyMSP-8)免疫可保护小鼠免受致命的疟疾侵袭,但不能预防感染。使用这种基于MSP的疫苗模型,研究了疫苗和感染引起的有助于保护的免疫反应。分析来自rPyMSP-8免疫的C57BL / 6和BALB / c小鼠的攻击前血清,发现抗原特异性IgG含量较高且相当,但是注意到同种型谱和构象表位的特异性不同。由于两种品系的小鼠都受到类似的针对约氏疟原虫的保护,因此疫苗诱导的应答与保护作用无关。但是,被动免疫研究表明,保护作用是由不同的免疫反应引起的。细胞因子缺乏小鼠的研究表明,只有在同时存在IL-4和IFN-γ的情况下,免疫C57BL / 6小鼠才能诱导保护作用。在BALB / c小鼠中,IL-4或IFN-γ的缺失导致IgG同种型谱的可预测变化,但并未降低rPyMSP-8免疫诱导的抗体应答的幅度。免疫的IL-4-/-BALB / c小鼠受到了约氏疟原虫的保护。出人意料的是,免疫的IFN-γ-/-BALB / c小鼠最初控制了寄生虫的生长,但最终死于感染。细胞因子产生的分析表明,在经rPyMSP-8免疫的BALB / c小鼠中,约氏疟原虫感染诱导了IFN-γ的两个不同峰。进一步的评估确定,在免疫和攻击的小鼠中进行保护所必需的是早期产生的IFN-γ。在持续的TGF-beta产生期间,rPyMSP-8免疫的小鼠出现了最大的寄生虫生长。 TGF-β中和不会导致不受控制的病理性促炎反应,但会导致rPyMSP-8免疫小鼠的保护作用有所改善。在同种型和抗TGF-β治疗的rPyMSP-8免疫小鼠之间,抗体或细胞因子应答无显着差异。有趣的是,当中和TGF-β时,通常会死于致死性约氏疟原虫的rPyMSP-8免疫IFN-γ-/-BALB / c小鼠受到保护。这些数据表明,在经rPyMSP-8免疫的小鼠中,TGF-β对于下调炎症反应不是必需的,并且在缺乏IFN-γ的情况下对疾病的结果有害。综合而言,数据表明在rPyMSP-8免疫的小鼠中抑制致死性约氏疟原虫需要高滴度的PyMSP-8抗体和感染诱导的IFN-γ,这与对其他寄生虫抗原的保护性反应的发展有关。

著录项

  • 作者

    Petritus, Patricia M.;

  • 作者单位

    Drexel University College of Medicine.;

  • 授予单位 Drexel University College of Medicine.;
  • 学科 Biology Parasitology.;Health Sciences Immunology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 预防医学、卫生学;
  • 关键词

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