EP2-PKA signaling is suppressed by triptolide in lipopolysaccharide-induced microglia activation
详细信息    查看全文
  • 作者:Ting Zhang ; Xiaoli Gong ; Guanzheng Hu ; Xiaomin Wang
  • 关键词:Triptolide ; EP2 ; Microglia ; Neuroinflammation ; Nitric oxide
  • 刊名:Journal of Neuroinflammation
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:12
  • 期:1
  • 全文大小:1,230 KB
  • 参考文献:1. Liu, B, Hong, JS (2003) Role of microglia in inflammation-mediated neurodegenerative diseases: mechanisms and strategies for therapeutic intervention. J Pharmacol Exp Ther 304: pp. 1-7 CrossRef
    2. Amor, S, Peferoen, LA, Vogel, DY, Breur, M, Valk, P, Baker, D (2013) Inflammation in neurodegenerative diseases - an update. Immunology 142: pp. 151-66 CrossRef
    3. Calabrese, V, Mancuso, C, Calvani, M, Rizzarelli, E, Butterfield, DA, Stella, AM (2007) Nitric oxide in the central nervous system: neuroprotection versus neurotoxicity. Nat Rev Neurosci 8: pp. 766-75 CrossRef
    4. Kim, YS, Joh, TH (2006) Microglia, major player in the brain inflammation: their roles in the pathogenesis of Parkinson’s disease. Exp Mol Med 38: pp. 333-47 CrossRef
    5. Tambuyzer, BR, Ponsaerts, P, Nouwen, EJ (2009) Microglia: gatekeepers of central nervous system immunology. J Leukoc Biol 85: pp. 352-70 CrossRef
    6. Iadecola, C, Niwa, K, Nogawa, S, Zhao, X, Nagayama, M, Araki, E (2001) Reduced susceptibility to ischemic brain injury and N-methyl-D-aspartate-mediated neurotoxicity in cyclooxygenase-2-deficient mice. Proc Natl Acad Sci USA 98: pp. 1294-9 CrossRef
    7. Serrano, GE, Lelutiu, N, Rojas, A, Cochi, S, Shaw, R, Makinson, CD (2011) Ablation of cyclooxygenase-2 in forebrain neurons is neuroprotective and dampens brain inflammation after status epilepticus. J Neurosci 31: pp. 14850-60 CrossRef
    8. Grosser, T, Yu, Y, Fitzgerald, GA (2010) Emotion recollected in tranquility: lessons learned from the COX-2 saga. Annu Rev Med. 61: pp. 17-33 CrossRef
    9. Jiang, J, Dingledine, R (2013) Prostaglandin receptor EP2 in the crosshairs of anti-inflammation, anti-cancer, and neuroprotection. Trends Pharmacol Sci 34: pp. 413-23 CrossRef
    10. Shie, FS, Montine, KS, Breyer, RM, Montine, TJ (2005) Microglial EP2 is critical to neurotoxicity from activated cerebral innate immunity. Glia 52: pp. 70-7 CrossRef
    11. Lu, L, Li, F, Wang, X (2010) Novel anti-inflammatory and neuroprotective agents for Parkinson’s disease. CNS Neurol Disord Drug Targets 9: pp. 232-40 CrossRef
    12. Wang, X, Liang, XB, Li, FQ, Zhou, HF, Liu, XY, Wang, JJ (2008) Therapeutic strategies for Parkinson’s disease: the ancient meets the future–traditional Chinese herbal medicine, electroacupuncture, gene therapy and stem cells. Neurochem Res 33: pp. 1956-63 CrossRef
    13. Zhou, HF, Liu, XY, Niu, DB, Li, FQ, He, QH, Wang, XM (2005) Triptolide protects dopaminergic neurons from inflammation-mediated damage induced by lipopolysaccharide intranigral injection. Neurobiol Dis 18: pp. 441-9 CrossRef
    14. Gong, Y, Xue, B, Jiao, J, Jing, L, Wang, X (2008) Triptolide inhibits COX-2 expression and PGE2 release by suppressing the activity of NF-kappaB and JNK in LPS-treated microglia. J Neurochem 107: pp. 779-88 CrossRef
    15. Andrew, PJ, Mayer, B (1999) Enzymatic function of nitric oxide synthases. Cardiovasc Res 43: pp. 521-31 CrossRef
    16. Griffith, OW, Stuehr, DJ (1995) Nitric oxide synthases: properties and catalytic mechanism. Annu Rev Physiol. 57: pp. 707-36
文摘
Background Microglia are key players for the inflammatory responses in the central nervous system. Suppression of microglial activation and the resulting production of proinflammatory molecules are considered a promising strategy to alleviate the progression of neurodegenerative disorders. Triptolide was demonstrated as a potent anti-inflammatory compound both in vitro and in vivo. The present study explored potential signal pathways of triptolide in the lipopolysaccharide (LPS)-induced inflammatory response using primary rat microglial cells. Findings Microglial cells were pretreated with triptolide and stimulated with LPS. To investigate the anti-inflammatory effect of triptolide, we used Griess reagent and Western blot for NO release and iNOS expression, respectively. Moreover, we applied microglia-conditioned medium to neuronal cells and used the MTS assay to test cell viability. We found that triptolide inhibited LPS-induced NO and iNOS synthesis in microglial cells, which in turn protected neurons. To evaluate the involvement of the EP2 pathway, we used real-time PCR and Western blot to determine EP2 expression. We found that LPS induced a large increase in EP2 expression in microglia, and triptolide almost completely inhibited LPS-induced EP2 expression. Using the selective EP2 agonist butaprost and the EP2 antagonist AH6809, we determined that triptolide inhibited LPS-stimulated NO production in microglia mainly through the EP2 pathway. Additionally, by further treating triptolide-treated microglia with the downstream PKA-specific activator 6-Bnz-cAMP or the Epac-specific activator 8-pCPT-2-O-Me-cAMP, we found that 6-Bnz-cAMP but not 8-pCPT-2-O-Me-cAMP increased NO production in triptolide-LPS treated microglia. These results indicate that the EP2-PKA pathway is very important for triptolide’s effects. Conclusions Triptolide inhibits LPS-stimulated NO production in microglia via a signaling mechanism involving EP2 and PKA. This finding may help establish the pharmacological function of triptolide in neurodegenerative disorders. Moreover, the observation of inflammatory EP2 signaling in primary microglia provides important evidence that EP2 regulates innate immunity in the central nervous system.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700