| Literature DB >> 32009907 |
Gen-Lin He1,2, Zhen Luo1, Ting-Ting Shen1, Ze-Ze Wang1, Ping Li1, Xue Luo1, Ju Yang1, Yu-Long Tan1, Yuan Wang3, Peng Gao4, Xue-Sen Yang1,2.
Abstract
The function of triggering receptor expressed on myeloid cells-2 (TREM2) has been described within microglia with a beneficial activated phenotype. However, the role of TREM2 underlying microglial phenotypic alterations in the cross-tolerance protection of heat acclimation (HA) against the inflammatory stimuli electromagnetic field (EMF) exposure is less well known. Here, we investigated the TREM2-related signaling mechanism induced by HA in EMF-stimulated N9 microglial cells (N9 cells). We found that EMF exposure significantly increased the production of pro-inflammatory cytokines tumor necrosis factor-α (TNF-α, IL-1β, and IL-6), and the expression of M1 markers (CD11b and CD86); meanwhile, decreased the levels of anti-inflammatory cytokines (IL-4 and IL-10) and the expression of M2 markers (CD206 and Arg1) in N9 cells. Clearly, HA treatment decreased the secretion of TNF-α, IL-1β and IL-6 and the expression of CD11b and CD86, and enhanced the production of IL-4 and IL-10 and the expression of CD206 and Arg1. Moreover, TREM2 esiRNA and selective inhibitor of PI3K clearly decreased anti-inflammatory cytokines production, M2 markers expression, and phosphorylation of PI3K and Akt following HA plus EMF stimulation. These results indicate that TREM2 and PI3K-Akt pathway are involved in the cross-tolerance protective effect of HA in microglial polarization towards the EMF exposure. This finding inspires future studies that aim to explore the non-drug approaches underlying EMF stimulation and other central nervous system (CNS) inflammatory diseases.Entities:
Keywords: EMF; PI3K-Akt pathway; TREM2; heat acclimation; microglial polarization
Year: 2020 PMID: 32009907 PMCID: PMC6974802 DOI: 10.3389/fncel.2019.00591
Source DB: PubMed Journal: Front Cell Neurosci ISSN: 1662-5102 Impact factor: 5.505
Figure 1Heat acclimation (HA) regulates the production of pro-/anti-inflammatory mediators in electromagnetic field (EMF)-stimulated N9 cells. N9 cells were pretreated with or without a 72-h HA process (20/4-h cycle of 37°C/39.5°C) and then exposed to 2.45-GHz EMF or sham-exposed for 20 min. Enzyme-Linked Immunosorbent Assay (ELISA) of tumor necrosis factor-α (TNF-α) (A), IL-1β (B), IL-6 (C), IL-4 (D), and IL-10 (E) production in the cell culture supernatants of N9 cells with or without HA pretreatment 12 h after EMF exposure. Data are presented as means ± SEM of three independent experiments. *P < 0.05, **P < 0.01 vs. the sham-exposed control group; #P < 0.05, ##P < 0.01 vs. the EMF-exposed group.
Figure 2HA regulates the expression of cell surface markers in EMF-stimulated N9 cells. N9 cells were pretreated with or without a 72-h HA process (20/4-h cycle of 37°C/39.5°C) and then exposed to 2.45-GHz EMF or sham-exposed for 20 min. Levels of cell surface marker CD11b and M1 marker CD86 (A), and M2 markers CD206 and Arg1 (B) in total cell lysates were analyzed using Western blotting, and the corresponding densitometric analyses were represented. Data are presented as means ± SEM of three independent experiments. *P < 0.05 vs. the sham-exposed control group; #P < 0.05 vs. the EMF-exposed group.
Figure 3Effects of HA on the expression of triggering receptor expressed on myeloid cells-2 (TREM2) and the phosphorylation of PI3K and Akt in EMF-stimulated N9 cells. N9 cells were pretreated with or without a 72-h HA process (20/4-h cycle of 37°C/39.5°C) and then exposed to 2.45-GHz EMF or sham-exposed for 20 min. Levels of TREM2 (A), and phosphorylation of PI3K and Akt (B) in total cell lysates were analyzed using Western blotting, and the corresponding densitometric analyses were represented. Data are presented as means ± SEM of three independent experiments. *P < 0.05 vs. the sham-exposed control group; #P < 0.05 vs. the EMF-exposed group.
Figure 4Effects of TREM2 esiRNA on M2 microglial phenotype regulation in EMF-stimulated N9 cells with HA preconditioning. N9 cells were transfected with or without TREM2 esiRNA (20 nM) at 60 h during the uncompleted 72-h HA and then continuously cultured 12 h to complete the HA process and the 24 h transfection of TREM2 esiRNA. Western blotting quantification of TREM2 (A), and M2 markers CD206 and Arg1 (C), and ELISA of anti-inflammatory cytokines IL-4 and IL-10 (B) production of in either control or HA-plus-EMF-treated N9 cells with or without TREM2 esiRNA. Data are presented as means ± SEM of three independent experiments. *P < 0.05 vs. the non-HA and sham-exposed control group; #P < 0.05 vs. the HA-plus-EMF-exposed group. (D) Confocal immunofluorescence microscopy was performed on cultures that were immunoreacted with antibodies against TREM2 and CD206 with esi-TREM2 treatment in HA-plus-EMF-treated N9 cells. Scale bar: 20 μm.
Figure 5Effects of TREM2 esiRNA and the PI3K inhibitor LY294002 on the phosphorylation of PI3K and Akt in EMF-stimulated N9 cells with HA preconditioning. N9 cells were transfected with or without TREM2 esiRNA (20 nM) at 60 h during the uncompleted 72-h HA and then continuously cultured 12 h to complete the HA process and the 24 h transfection of TREM2 esiRNA. Alternatively, N9 cells were treated with or without LY294002 (10 μM) for 30 min prior to the end of the 72-h HA process. Levels of PI3K and Akt phosphorylation in total cell lysates were analyzed using Western blotting, and the corresponding densitometric analyses were represented. Data are presented as means ± SEM of three independent experiments. *P < 0.05 vs. the non-HA and sham-exposed control group; #P < 0.05 vs. the HA-plus-EMF-exposed group.
Figure 6Effects of LY294002 on M2 microglial phenotype regulation in EMF-stimulated N9 cells with HA preconditioning. N9 cells were treated with or without LY294002 (10 μM) for 30 min prior to the end of the 72-h HA process. ELISA of anti-inflammatory cytokines IL-4 (A) and IL-10 (B) production of in either control or HA plus EMF-treated N9 cells with or without LY294002 pretreatment. (C) The expression of CD206 and Arg1 were determined, and the corresponding densitometric analyses were represented. Data are presented as means ± SEM of three independent experiments. *P < 0.05 vs. the non-HA and sham-exposed control group; #P < 0.05 vs. the HA-plus-EMF-exposed group. (D) Confocal immunofluorescence microscopy was performed on cultures that were immunoreacted with antibodies against p-Akt and CD206 with LY294002 treatment in HA-plus-EMF-treated N9 cells. Scale bar: 20 μm.