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C5aR 信号在全杀死血期疫苗诱导疟疾特异性 CD4+ T 细胞应答中的重要作用。

An essential role for C5aR signaling in the optimal induction of a malaria-specific CD4+ T cell response by a whole-killed blood-stage vaccine.

机构信息

Department of Pathogenic Biology, Third Military Medical University, Chongqing 400038, People's Republic of China.

出版信息

J Immunol. 2013 Jul 1;191(1):178-86. doi: 10.4049/jimmunol.1201190. Epub 2013 May 24.

Abstract

The protective immunity induced by the whole-killed parasite vaccine against malarial blood-stage infection is dependent on the CD4(+) T cell response. However, the mechanism underlying this robust CD4(+) T cell response elicited by the whole-killed parasite vaccine is still largely unknown. In this study, we observe that immunization with Plasmodium yoelii-parasitized RBC lysate activates complement C5 and generates C5a. However, the protective efficacy against P. yoelii 17XL challenge is considerably reduced, and the malaria-specific CD4(+) T cell activation and memory T cell differentiation are largely suppressed in the C5aR-deficient (C5aR(-/-)) mice. An adoptive transfer assay demonstrates that the reduced protection of C5aR(-/-) mice is closely associated with the severely impaired CD4(+) T cell response. This is further confirmed by the fact that administration of C5aR antagonist significantly reduces the protective efficacy of the immunized B cell-deficient mice. Further study indicates that the defective CD4(+) T cell response in C5aR(-/-) mice is unlikely involved in the expansion of CD4(+)CD25(+)Foxp3(+) T cells, but strongly linked to a defect in dendritic cell (DC) maturation and the ability to allostimulate CD4(+) T cells. These results demonstrate that C5aR signaling is essential for the optimal induction of the malaria-specific CD4(+) T cell response by the whole-killed parasite vaccine through modulation of DCs function, which provides us with new clues to design an effective blood-stage subunit vaccine and helps us to understand the mechanism by which the T cell response is regulated by the complement system.

摘要

由全灭寄生虫疫苗诱导的针对疟疾血期感染的保护性免疫依赖于 CD4(+)T 细胞反应。然而,由全灭寄生虫疫苗引起的这种强大的 CD4(+)T 细胞反应的机制在很大程度上仍然未知。在这项研究中,我们观察到用 Plasmodium yoelii-寄生虫化的 RBC 裂解物免疫会激活补体 C5 并产生 C5a。然而,对 P. yoelii 17XL 挑战的保护效力显著降低,并且 C5aR 缺陷(C5aR(-/-))小鼠中的疟疾特异性 CD4(+)T 细胞激活和记忆 T 细胞分化受到很大抑制。过继转移试验表明,C5aR(-/-)小鼠的保护作用降低与 CD4(+)T 细胞反应严重受损密切相关。这进一步证实了 C5aR 拮抗剂的给药显著降低了免疫 B 细胞缺陷小鼠的保护效力。进一步的研究表明,C5aR(-/-)小鼠中的缺陷 CD4(+)T 细胞反应不太可能涉及 CD4(+)CD25(+)Foxp3(+)T 细胞的扩增,而是与树突状细胞 (DC) 成熟和刺激 CD4(+)T 细胞的能力缺陷密切相关。这些结果表明,C5aR 信号对于全灭寄生虫疫苗通过调节 DC 功能最佳诱导疟疾特异性 CD4(+)T 细胞反应是必不可少的,这为我们设计有效的血期亚单位疫苗提供了新的线索,并帮助我们了解补体系统调节 T 细胞反应的机制。

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