4.5 Article

Differential Cytokine-Induced Responses of Polarized Microglia

期刊

BRAIN SCIENCES
卷 11, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/brainsci11111482

关键词

microglia; cytokines; microglial polarization; programmed death-ligand 1 (PD-L1)

资金

  1. National Institute of Mental Health [MH-066703]

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The study investigated the role of pro- and anti-inflammatory mediators in driving microglial cell polarization and inducing differential responses. Different mediators have varying effects on the polarization state of microglial cells, leading to transitions between different activation states.
The role of select pro- and anti-inflammatory mediators in driving microglial cell polarization into classically (M1), or alternatively, (M2) activated states, as well as the subsequent differential responses of these induced phenotypes, was examined. Expression of PD-L1, MHC-II, MHC-I, arginase 1 (Arg-1), and inducible nitric oxide synthase (iNOS) was assessed using multi-color flow cytometry. We observed that both pro- and anti-inflammatory mediators induced PD-L1 expression on non-polarized microglia. Moreover, IFN-gamma stimulated significant MHC class I and II expression on these cells. Interestingly, we observed that only IL-4 treatment induced Arg-1 expression, indicating M2 polarization. These M2 cells were refractory to subsequent depolarization and maintained their alternatively activated state. Furthermore, PD-L1 expression was significantly induced on these M2-polarized microglia after treatment with pro-inflammatory mediators, but not anti-inflammatory cytokines. In addition, we observed that only LPS induced iNOS expression in microglial cells, indicating M1 polarization. Furthermore, IFN-gamma significantly increased the percentage of M1-polarized microglia expressing iNOS. Surprisingly, when these M1-polarized microglia were treated with either IL-6 or other anti-inflammatory cytokines, they returned to their non-polarized state, as demonstrated by significantly reduced expression of iNOS. Taken together, these results demonstrate differential responses of microglial cells to mediators present in dissimilar microenvironments.

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