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Chronic morphine-induced microRNA-124 promotes microglial immunosuppression by modulating P65 and TRAF6
Shuwei Qiu1, Yimin Feng2, Gene LeSage2
1Department of Neurology, Sun Yat-Sen Memorial Hospital, Sun Yat-sen University, Guangzhou 510120, China; Department of Internal Medicine, College of Medicine, East Tennessee State University, Johnson City, TN 37614; and.
Abstract:
Opioids have been widely applied in clinics as one of the most potent pain relievers for centuries, but their abuse has deleterious physiological effects including immunosuppression. However, the mechanisms are unclear. TLRs and acetylcholine are widely expressed in the immune and nervous systems, and play critical roles in immune responses. In this article, we show that morphine suppresses the innate immunity in microglia and bone marrow-derived macrophages through differential regulation of TLRs and acetylcholinesterase. Either morphine or inhibition of acetylcholine significantly promotes upregulation of microRNA-124 (miR-124) in microglia, bone marrow-derived macrophages, and the mouse brain, where miR-124 mediates morphine inhibition of the innate immunity by directly targeting a subunit of NF-κB p65 and TNFR-associated factor 6 (TRAF6). Furthermore, transcription factors AP-1 and CREB inhibited miR-124, whereas p65 bound directly to promoters of miR-124, thereby enhancing miR-124 transcription. Moreover, acute morphine treatment transiently upregulated the expression of p65 and phospho-p65 in both nucleus and cytoplasm priming the expression of miR-124, whereas long exposure of morphine maintained miR-124 expression, which inhibited p65- and TRAF6-dependent TLR signaling. These data suggest that modulation of miRs is capable of preventing opioid-induced damage to microglia.
Insights
Morphine suppresses innate immunity by altering microRNA-124 (miR-124) levels, which target key immune signaling proteins. Modulating miR-124 may prevent opioid-induced immune damage.
Area of Science:
- Neuroimmunology
- Molecular Biology
- Pharmacology
Background:
- Opioids are potent analgesics but their abuse causes immunosuppression via unclear mechanisms.
- Toll-like receptors (TLRs) and acetylcholine are crucial in immune and nervous system responses.
Purpose of the Study:
- To elucidate the mechanisms by which morphine affects innate immunity.
- To investigate the role of microRNA-124 (miR-124) in opioid-induced immunosuppression.
Main Methods:
- Examined the effects of morphine on Toll-like receptors (TLRs) and acetylcholinesterase in immune cells.
- Analyzed microRNA-124 (miR-124) expression and its targets, NF-κB p65 and TRAF6, in response to morphine.
- Investigated the regulation of miR-124 by transcription factors AP-1, CREB, and p65.
Main Results:
- Morphine suppresses innate immunity in microglia and macrophages by regulating TLRs and acetylcholinesterase.
- Morphine and acetylcholine inhibition upregulate miR-124, which targets NF-κB p65 and TRAF6, mediating immunosuppression.
- p65 directly enhances miR-124 transcription, while AP-1 and CREB inhibit it; morphine modulates p65 expression and miR-124 levels.
Conclusions:
- MicroRNA-124 plays a central role in mediating morphine's immunosuppressive effects on innate immunity.
- Modulating microRNAs offers a potential strategy to prevent opioid-induced immune system damage.
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