Selenium suppressed the LPS‐induced inflammation of bovine endometrial epithelial cells through NF‐κB and MAPK pathways under high cortisol background

Author:

Cui Luying123ORCID,Zhang Jiaqi123,Guo Jing123,Zhang Min123,Li Wenjie123,Dong Junsheng123,Liu Kangjun123,Guo Long123,Li Jun123,Wang Heng123,Li Jianji123ORCID

Affiliation:

1. College of Veterinary Medicine, Yangzhou University Jiangsu Co‐Innovation Center for Prevention and Control of Important Animal Infectious Disease and Zoonoses Yangzhou 225009 China

2. Joint International Research Laboratory of Agriculture and Agriproduct Safety of the Ministry of Education Yangzhou Jiangsu 225009 China

3. International Research Laboratory of Prevention and Control of Important Animal Infectious Diseases and Zoonotic Diseases of Jiangsu Higher Education Institutions Yangzhou University Yangzhou 225009 China

Abstract

AbstractThe bovine uterus is susceptible to infection, and the elevated cortisol level due to stress are common in cows after delivery. The essential trace element selenium plays a pivotal role in the antioxidant and anti‐inflammatory defence system of body. This study investigated whether selenium supplementation protected endometrial cells from inflammation in the presence of high‐level cortisol. The primary bovine endometrial epithelial cells were subjected to Escherichia coli lipopolysaccharide to establish cellular inflammation model. The gene expression of inflammatory mediators and proinflammatory cytokines was measured by quantitative PCR. The key proteins of NF‐κB and MAPK signalling pathways were detected by Western blot and immunofluorescence. The result showed that pre‐treatment of Na2SeO3 (1, 2 and 4 μΜ) decreased the mRNA expression of proinflammatory genes, inhibited the activation of NF‐κB and suppressed the phosphorylation of extracellular signal‐regulated kinase, P38MAPK and c‐Jun N‐terminal kinase. This inhibition of inflammation was more apparent in the presence of high‐level cortisol (30 ng/mL). These results indicated that selenium has an anti‐inflammatory effect, which is mediated via NF‐κB and MAPK signalling pathways and is augmented by cortisol in bovine endometrial epithelial cells.

Funder

Higher Education Discipline Innovation Project

China Postdoctoral Science Foundation

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Publisher

Wiley

Subject

Cell Biology,Molecular Medicine

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