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Prostaglandin E2 receptors signaling on the differentiation of regulatory T cells and Th17 cells / 中华风湿病学杂志
Chinese Journal of Rheumatology ; (12): 375-379, 2014.
Article in Chinese | WPRIM | ID: wpr-453524
ABSTRACT
Objective To study the receptors signaling of prostaglandin E2 on the differentiation of regulatory T (Treg) cells and Th17 cells.Methods The expression of prostaglandin E2 receptors (EP1/EP2/EP3/EP4) on the MACS-purified CD4+CD62L+ T (Th0) cells was analyzed by flow cytometry and reverse transcription polymerase chain reaction (RT-PCR).The quantity of CD25+Foxp3+ cells was examined by flow cytometry,the expression of FoxP3 mRNA and RORγt mRNA were detected using real-time RT-PCR,the level of IL-17 in the culture supernatants was detected by enzyme-linked immunosorbent assay (ELISA).ANOVA,LSD-t,Dunnett T3 were used for statistical analysis.Results EP1,EP2,EP3,EP4 were expressed on Th0 cells at different levels,and EP2 [(89.7±9.1)%] had the strongest expression.PGE2 [(3.0± 2.2) %],EP2 agonist [(4.5± 1.0) %] and EP4 agonist [(8.8 ±2.5) %] decreased the quantity of CD25 +Foxp3 + cells compared with the control group [(28.6±6.8)%] (t=7.156,P=0.021; t=6.958,P=0.032; t=5.359,P=0.044).PGE2(0.210±0.020),EP1 agonist (0.833±0.045),EP2 agonist (0.227±0.025) and EP4 agonist (0.450±0.060) decreased the expression of Foxp3 mRNA compared with the control group (1.000) (t=23.817,t=5.026,t=23.313,t=16.581; all P=0.000).PGE2 [(22±6)pg/ml],EP2 agonist [(24±5)pg/ml]and EP4 agonist [(207±19) pg/ml] decreased the secretion of IL-17 compared with the control group [(678±87) pg/ml] (t=14.925,P=0.004; t=14.873,P=0.004; t=10.480,P=0.008).PGE2 (0.141±0.027),EP1 agonist (0.869±0.033),EP2 agonist (0.176±0.029) and EP4 agonist(0.371±0.042) decreased the expression of RORγt mRNA compared with the control group (1.000) (t=34.046,t=5.184,t=32.673,t=24.962,all P=0.000).Conclusion EP1,EP2,EP3,EP4 receptors are expressed on CD4+CD62L+ T (Th0) cells at different levels.Prostaglandin E2 inhibits the differentiation of Treg cells and Th17 cells via the EP2 and EP4 receptors signaling.

Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Rheumatology Year: 2014 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Rheumatology Year: 2014 Type: Article