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马副蛔虫各期幼虫的细胞因子反应和佐剂 G3 的体外调节作用。

Cytokine responses to various larval stages of equine strongyles and modulatory effects of the adjuvant G3 in vitro.

机构信息

Department of Biomedical Sciences and Veterinary Public Health, Swedish University of Agricultural Sciences, SLU, Uppsala, Sweden.

Kefei Hu; R&D Unit, CRODA Denmark A/S, Frederikssund, Denmark.

出版信息

Parasite Immunol. 2021 Jan;43(1):e12794. doi: 10.1111/pim.12794. Epub 2020 Oct 4.

Abstract

AIMS

To generate different larval stages of Strongylus vulgaris and to study cytokine responses in cultures of eqPBMC exposed to defined larval stages of S. vulgaris and cyathostomins with the aim to understand the early immune reaction to these parasites.

METHODS AND RESULTS

EqPBMC were exposed to S. vulgaris larvae (L3, exsheated L3 and L4) and cyathostomin L3 and analysed for cytokine gene expression. Procedures for decontamination, culturing and attenuation of larvae were established. Transcription of IL-4, IL-5 and IL-13 was induced by both S. vulgaris and cyathostomin L3. Moulting of S. vulgaris from L3 to L4 stage was accompanied by a shift to high expression of IL-5 and IL-9 (exsheated L3 and L4) and IFN-γ (L4 only). In parallel, the adjuvant G3 modified the cytokine profile induced by both parasites by reducing the expression of IL-4, IL-5 and IL-10 while concomitantly enhancing the expression of IFN-γ.

CONCLUSION

The L4 stage of S. vulgaris generated a cytokine profile different from that induced by the earlier L3 stage of S. vulgaris and cyathostomins. This diversity depending on the life cycle stage will have implications for the choice of antigen and adjuvant in future vaccine design.

摘要

目的

生成普通马胃蝇蛆的不同幼虫期,并研究暴露于普通马胃蝇蛆和圆形线虫特定幼虫期的 eqPBMC 中的细胞因子反应,旨在了解对这些寄生虫的早期免疫反应。

方法和结果

将 eqPBMC 暴露于普通马胃蝇蛆幼虫(L3、蜕皮 L3 和 L4)和圆形线虫 L3,并分析细胞因子基因表达。建立了幼虫的消毒、培养和减毒程序。IL-4、IL-5 和 IL-13 的转录被普通马胃蝇蛆和圆形线虫 L3 诱导。普通马胃蝇蛆从 L3 期到 L4 期蜕皮伴随着 IL-5 和 IL-9(蜕皮 L3 和 L4)和 IFN-γ(仅 L4)的高表达。与此同时,佐剂 G3 通过降低 IL-4、IL-5 和 IL-10 的表达,同时增强 IFN-γ的表达,改变了两种寄生虫诱导的细胞因子谱。

结论

普通马胃蝇蛆的 L4 期产生的细胞因子谱与普通马胃蝇蛆和圆形线虫的早期 L3 期诱导的细胞因子谱不同。这种依赖于生命周期阶段的多样性将对未来疫苗设计中抗原和佐剂的选择产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56d7/7757165/9e9bbf03a98e/PIM-43-e12794-g001.jpg

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