Clearance of bacteria from lymph nodes in sheep immunized with Brucella suis S2 vaccine is associated with M1 macrophage activation

Author:

Chen Si,Chen Yuanyuan,Jiao Zizhuo,Wang Chengqiang,Zhao Dantong,Liu Yongbin,Zhang Wenguang,Zhao Shihua,Yang Bin,Zhao Qinan,Fu Shaoyin,He Xiaolong,Chen Qiaoling,Man Churiga,Liu Guoying,Wei Xuefeng,Du Li,Wang FengyangORCID

Abstract

AbstractOvine brucellosis is a global zoonotic disease of sheep caused by Brucella melitensis, which inflicts a significant burden on human and animal health. Brucella suis strain S2 (B. suis S2) is a smooth live attenuated vaccine for the prevention of ovine brucellosis in China. However, no previous studies have assessed the immunogenicity of B. suis S2 vaccine after oral immunization in sheep. Here, we attempted to evaluate the ovine immune response over the course of B. suis S2 immunization and to identify in vivo predictors for vaccine development. Body temperature, serum Brucella antibodies, serum cytokines (IL-12p70 and interferon [IFN]-γ), and bacterial load in the mandibular lymph nodes (LN), superficial cervical LN, superficial inguinal LN, and spleen were investigated to determine the safety and efficacy of the vaccine. The abnormal body temperature of sheep occurred within 8 days post-infection (dpi). Brucella suis S2 persisted for a short time (< 21 dpi) in the mandibular LN. The highest level of IL-12p70 was observed at 9 dpi, whereas serum IFN-γ levels peaked at 12 dpi. Transcriptome analysis and quantitative reverse transcription PCR were performed to determine gene expression profiles in the mandibular LN of sheep. Antigen processing and presentation pathway was the dominant pathway related to the dataset. Our studies suggest that the immune response in ovine LN resembled type 1 immunity with the secretion of IL-12p70 and IFN-γ after B.suis S2 immunization and the vaccine may eliminate Brucella via stimulation of M1 macrophages through the course of Th cells.

Funder

Academician Innovation Platform Project of Hainan Province

Hainan Innovation Center for Academician of Jin Ningyi

Hainan Innovation Center for Academician of Zhang Yong

MOF& MOAR-CARS38

Special Funding Projects for Local Science and Technology Development Guided by the Central Committee

Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Veterinary

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