首页> 外文期刊>Veterinary research >Glyceraldehyde-3-phosphate dehydrogenase from Eimeria acervulina modulates the functions of chicken dendritic cells to boost Th1 type immune response and stimulates autologous CD4 + T cells differentiation in-vitro
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Glyceraldehyde-3-phosphate dehydrogenase from Eimeria acervulina modulates the functions of chicken dendritic cells to boost Th1 type immune response and stimulates autologous CD4 + T cells differentiation in-vitro

机译:来自eimeria acervulina的甘油醛-3-磷酸脱氢酶调节鸡树突细胞的功能,以提高Th1型免疫应答,并刺激体外分化的自体CD4 + T细胞

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Dendritic cells (DCs) play a pivotal role to amplify antigen-specific immune responses. Antigens that sensitize T cells via antigen-presentation by DCs could enhance the capacity of host immunity to fight infections. In this study, we tested the?immunogenic profiles of chicken DCs towards Glyceraldehyde-3-phosphate dehydrogenase from Eimeria acervulina (EaGAPDH). Immunoblot analysis showed that recombinant EaGAPDH (rEaGAPDH) protein was successfully recognized by rat sera generated against rEaGAPDH. Interaction and internalisation of rEaGAPDH by chicken splenic-derived DCs (chSPDCs) was confirmed by immunofluorescence analysis. Flow cytometry revealed that chSPDCs upregulated MHCII, CD1.1, CD11c, CD80, and CD86 cell-surface markers. Moreover, mRNA expressions of DC maturation biomarkers (CCL5, CCR7, and CD83) and TLR signalling genes (TLR15 and MyD88) were also upregulated whereas those of Wnt signalling were non-significant compared to negative controls. rEaGAPDH treatment induced IL-12 and IFN-γ secretion in chSPDCs but had no effect on IL-10 and TGF-β. Likewise, DC-T cell co-culture promoted IFN-γ secretion and the level of IL-4 was unaffected. Proliferation of T cells and their differentiation into CD3+/CD4+ T cells were triggered in chSPDCs-T cells co-culture system. Taken together, rEaGAPDH could promote Th1 polarization by activating both host DCs and T cells and sheds new light on the role of this important molecule which might contribute to the development of new DCs-based immunotherapeutic strategies against coccidiosis.
机译:树突细胞(DCS)起枢转作用以扩增抗原特异性免疫反应。通过DCS通过抗原呈递致敏T细胞的抗原可以增强宿主免疫力的能力。在这项研究中,我们从Eimeria Acervulina(EAGAPDH)测试了朝向甘油醛-3-磷酸脱氢酶的鸡DCS的鸡DC的免疫原性谱。免疫印迹分析表明,通过对Reagapdh产生的大鼠血清成功地认识到重组EAGAPDH(ReaGaPDH)蛋白。通过免疫荧光分析证实了鸡脾衍生的DCS(CHSPDCs)的重复涂覆的相互作用和内化。流式细胞仪揭示了CHSPDC上调了MHCII,CD1.1,CD11C,CD80和CD86细胞表面标志物。此外,还上调了DC成熟生物标志物(CCL5,CCR7和CD83)和TLR信号传导基因(TLR15和MYD88)的mRNA表达,而WNT信号传导的信号传导与阴性对照相比是非显着的。 Reagapdh治疗诱导CHSPDC中的IL-12和IFN-γ分泌,但对IL-10和TGF-β没有影响。同样地,DC-T细胞共培养促进IFN-γ分泌,IL-4的水平不受影响。在CHSPDCS-T细胞共培养系统中触发T细胞的增殖及其分化为CD3 + / CD4 + T细胞。一起服用,通过激活宿主DCS和T细胞来促进Th1偏振,并缩小这一重要分子的作用,这可能有助于开发新的DCS的免疫治疗策略对椰子病。

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