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Journal Abstract Search


327 related items for PubMed ID: 10936177

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  • 3. P2X7-dependent, but differentially regulated release of IL-6, CCL2, and TNF-α in cultured mouse microglia.
    Shieh CH, Heinrich A, Serchov T, van Calker D, Biber K.
    Glia; 2014 Apr; 62(4):592-607. PubMed ID: 24470356
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  • 4. Lidocaine attenuates proinflammatory cytokine production induced by extracellular adenosine triphosphate in cultured rat microglia.
    Su D, Gu Y, Wang Z, Wang X.
    Anesth Analg; 2010 Sep; 111(3):768-74. PubMed ID: 20686009
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  • 6. Role of MAP kinase pathways in mediating IL-6 production in human primary mesangial and proximal tubular cells.
    Leonard M, Ryan MP, Watson AJ, Schramek H, Healy E.
    Kidney Int; 1999 Oct; 56(4):1366-77. PubMed ID: 10504489
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  • 7. Ca(2+) spiking activity caused by the activation of store-operated Ca(2+) channels mediates TNF-α release from microglial cells under chronic purinergic stimulation.
    Ikeda M, Tsuno S, Sugiyama T, Hashimoto A, Yamoto K, Takeuchi K, Kishi H, Mizuguchi H, Kohsaka SI, Yoshioka T.
    Biochim Biophys Acta; 2013 Dec; 1833(12):2573-2585. PubMed ID: 23830920
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  • 8. Bi-functional effects of ATP/P2 receptor activation on tumor necrosis factor-alpha release in lipopolysaccharide-stimulated astrocytes.
    Kucher BM, Neary JT.
    J Neurochem; 2005 Feb; 92(3):525-35. PubMed ID: 15659223
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  • 9. The nucleotide receptor P2X7 mediates actin reorganization and membrane blebbing in RAW 264.7 macrophages via p38 MAP kinase and Rho.
    Pfeiffer ZA, Aga M, Prabhu U, Watters JJ, Hall DJ, Bertics PJ.
    J Leukoc Biol; 2004 Jun; 75(6):1173-82. PubMed ID: 15075366
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  • 11. Novel strategies for opposing murine microglial activation.
    Paris D, Town T, Mullan M.
    Neurosci Lett; 2000 Jan 07; 278(1-2):5-8. PubMed ID: 10643787
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  • 12. Ca(2+)-dependent reduction of glutamate aspartate transporter GLAST expression in astrocytes by P2X(7) receptor-mediated phosphoinositide 3-kinase signaling.
    Liu YP, Yang CS, Chen MC, Sun SH, Tzeng SF.
    J Neurochem; 2010 Apr 07; 113(1):213-27. PubMed ID: 20070863
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  • 13. Mitogen-activated protein kinase and caspase signaling pathways are required for P2X7 receptor (P2X7R)-induced pore formation in human THP-1 cells.
    Donnelly-Roberts DL, Namovic MT, Faltynek CR, Jarvis MF.
    J Pharmacol Exp Ther; 2004 Mar 07; 308(3):1053-61. PubMed ID: 14634045
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  • 14. p38 MAP kinase and MKK-1 co-operate in the generation of GM-CSF from LPS-stimulated human monocytes by an NF-kappa B-independent mechanism.
    Meja KK, Seldon PM, Nasuhara Y, Ito K, Barnes PJ, Lindsay MA, Giembycz MA.
    Br J Pharmacol; 2000 Nov 07; 131(6):1143-53. PubMed ID: 11082122
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  • 15. CD40-mediated signaling in monocytic cells: up-regulation of tumor necrosis factor receptor-associated factor mRNAs and activation of mitogen-activated protein kinase signaling pathways.
    Pearson LL, Castle BE, Kehry MR.
    Int Immunol; 2001 Mar 07; 13(3):273-83. PubMed ID: 11222496
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  • 16. P2X7 nucleotide receptor activation enhances IFN gamma-induced type II nitric oxide synthase activity in BV-2 microglial cells.
    Gendron FP, Chalimoniuk M, Strosznajder J, Shen S, González FA, Weisman GA, Sun GY.
    J Neurochem; 2003 Oct 07; 87(2):344-52. PubMed ID: 14511112
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  • 17. Mechanisms underlying extracellular ATP-evoked interleukin-6 release in mouse microglial cell line, MG-5.
    Shigemoto-Mogami Y, Koizumi S, Tsuda M, Ohsawa K, Kohsaka S, Inoue K.
    J Neurochem; 2001 Sep 07; 78(6):1339-49. PubMed ID: 11579142
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  • 18. [Synergetic effect of mitogen-activated protein kinase pathway on expression of tumor necrosis factor alpha gene in RAW 264.7 cells induced by lipopolysaccharide].
    Jiang Y, Liu A, Qin Q, Yin Z.
    Zhonghua Yi Xue Za Zhi; 2002 Oct 25; 82(20):1410-4. PubMed ID: 12509925
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  • 19. ATP selectively suppresses the synthesis of the inflammatory protein microglial response factor (MRF)-1 through Ca(2+) influx via P2X(7) receptors in cultured microglia.
    Kaya N, Tanaka S, Koike T.
    Brain Res; 2002 Oct 11; 952(1):86-97. PubMed ID: 12363408
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  • 20. P2X7 receptor activation induces CXCL2 production in microglia through NFAT and PKC/MAPK pathways.
    Shiratori M, Tozaki-Saitoh H, Yoshitake M, Tsuda M, Inoue K.
    J Neurochem; 2010 Aug 11; 114(3):810-9. PubMed ID: 20477948
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