Send Orders of Reprints at Reprints@benthamscience.net Non-neuronal Cell Modulation Relieves Neuropathic Pain: Efficacy of the Endogenous Lipid Palmitoylethanolamide
暂无分享,去创建一个
[1] L. Facci,et al. Microglia and mast cells: two tracks on the road to neuroinflammation , 2012, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[2] A. Schaeffer,et al. Role of mast cells in male chronic pelvic pain. , 2012, The Journal of urology.
[3] R. Paus,et al. Endocannabinoids limit excessive mast cell maturation and activation in human skin. , 2012, The Journal of allergy and clinical immunology.
[4] A. Ribeiro-da-Silva,et al. Neurotrophic factor changes in the rat thick skin following chronic constriction injury of the sciatic nerve , 2012, Molecular pain.
[5] T. Williams,et al. Mechanisms underlying the localisation of mast cells in tissues. , 2011, Trends in immunology.
[6] E. Mazzon,et al. Effects of palmitoylethanolamide on release of mast cell peptidases and neurotrophic factors after spinal cord injury , 2011, Brain, Behavior, and Immunity.
[7] J. Wood. Visceral pain: spinal afferents, enteric mast cells, enteric nervous system and stress. , 2011, Current pharmaceutical design.
[8] D. De Filippis,et al. Palmitoylethanolamide reduces granuloma-induced hyperalgesia by modulation of mast cell activation in rats , 2011, Molecular pain.
[9] S. Cuzzocrea,et al. Central administration of palmitoylethanolamide reduces hyperalgesia in mice via inhibition of NF-kappaB nuclear signalling in dorsal root ganglia. , 2009, European journal of pharmacology.
[10] Stephen P. H. Alexander,et al. Minocycline treatment inhibits microglial activation and alters spinal levels of endocannabinoids in a rat model of neuropathic pain , 2009, Molecular pain.
[11] L. Watkins,et al. Pathological and protective roles of glia in chronic pain , 2009, Nature Reviews Neuroscience.
[12] B. Costa,et al. The endogenous fatty acid amide, palmitoylethanolamide, has anti-allodynic and anti-hyperalgesic effects in a murine model of neuropathic pain: involvement of CB1, TRPV1 and PPARγ receptors and neurotrophic factors , 2008, PAIN.
[13] E. Fabbretti,et al. Mast cell activation by myelin through scavenger receptor , 2008, Journal of Neuroimmunology.
[14] E. Mazzon,et al. Effects of Palmitoylethanolamide on Signaling Pathways Implicated in the Development of Spinal Cord Injury , 2008, Journal of Pharmacology and Experimental Therapeutics.
[15] Ji Zhang,et al. Characterization of cell proliferation in rat spinal cord following peripheral nerve injury and the relationship with neuropathic pain , 2008, PAIN®.
[16] N. Stella,et al. Microglia produce and hydrolyze palmitoylethanolamide , 2008, Neuropharmacology.
[17] C. Woolf,et al. The neuropathic pain triad: neurons, immune cells and glia , 2007, Nature Neuroscience.
[18] T. Bisogno,et al. Changes in spinal and supraspinal endocannabinoid levels in neuropathic rats , 2007, Neuropharmacology.
[19] A. Hohmann,et al. Rapid Broad-Spectrum Analgesia through Activation of Peroxisome Proliferator-Activated Receptor-α , 2006, Journal of Pharmacology and Experimental Therapeutics.
[20] F. Rossi,et al. Origin and distribution of bone marrow‐derived cells in the central nervous system in a mouse model of amyotrophic lateral sclerosis , 2006, Glia.
[21] S. Kawana,et al. Role of substance P in stress-derived degranulation of dermal mast cells in mice. , 2006, Journal of dermatological science.
[22] M. Tsuda,et al. Neuropathic pain and spinal microglia: a big problem from molecules in ‘small’ glia , 2005, Trends in Neurosciences.
[23] D. Piomelli,et al. The Nuclear Receptor Peroxisome Proliferator-Activated Receptor-α Mediates the Anti-Inflammatory Actions of Palmitoylethanolamide , 2005, Molecular Pharmacology.
[24] R. Levi‐montalcini,et al. A proposed autacoid mechanism controlling mastocyte behaviour , 2005, Agents and Actions.
[25] M. E. Corcoran,et al. Selective Antiepileptic Effects of N‐Palmitoylethanolamide, a Putative Endocannabinoid , 2004, Epilepsia.
[26] D. Ceballos,et al. Behavioral and histological effects of endoneurial administration of nerve growth factor: possible implications in neuropathic pain , 2004, Brain Research.
[27] D. Tracey,et al. Inflammation and hyperalgesia induced by nerve injury in the rat: a key role of mast cells , 2003, Pain.
[28] Xin-Fu Zhou,et al. Lumbar 5 ventral root transection-induced upregulation of nerve growth factor in sensory neurons and their target tissues: a mechanism in neuropathic pain , 2003, Molecular and Cellular Neuroscience.
[29] S. Conti,et al. Therapeutic effect of the endogenous fatty acid amide, palmitoylethanolamide, in rat acute inflammation: inhibition of nitric oxide and cyclo‐oxygenase systems , 2002, British journal of pharmacology.
[30] C. Fowler,et al. ‘Entourage’ effects of N‐acyl ethanolamines at human vanilloid receptors. Comparison of effects upon anandamide‐induced vanilloid receptor activation and upon anandamide metabolism , 2002, British journal of pharmacology.
[31] D. Parolaro,et al. Antiinflammatory action of endocannabinoid palmitoylethanolamide and the synthetic cannabinoid nabilone in a model of acute inflammation in the rat , 2002, British journal of pharmacology.
[32] V. Di Marzo,et al. Palmitoylethanolamide enhances anandamide stimulation of human vanilloid VR1 receptors , 2001, FEBS letters.
[33] Steven F. Maier,et al. Glial activation: a driving force for pathological pain , 2001, Trends in Neurosciences.
[34] R. Schmidt,et al. Histamine excites groups III and IV afferents from the cat knee joint depending on their resting activity , 2001, Neuroscience Letters.
[35] D. Piomelli,et al. Antinociceptive activity of the endogenous fatty acid amide, palmitylethanolamide. , 2001, European journal of pharmacology.
[36] S. Vandevoorde,et al. Anticonvulsant Activity of N‐Palmitoylethanolamide, a Putative Endocannabinoid, in Mice , 2001, Epilepsia.
[37] H. Matsuda,et al. Nerve growth factor functions as a chemoattractant for mast cells through both mitogen-activated protein kinase and phosphatidylinositol 3-kinase signaling pathways. , 2000, Blood.
[38] T. Theoharides,et al. Morphological and functional demonstration of rat dura mater mast cell–neuron interactions in vitro and in vivo , 1999, Brain Research.
[39] M. Ramer,et al. Adrenergic innervation of rat sensory ganglia following proximal or distal painful sciatic neuropathy: distinct mechanisms revealed by anti‐NGF treatment , 1999, The European journal of neuroscience.
[40] D. Piomelli,et al. Control of pain initiation by endogenous cannabinoids , 1998, Nature.
[41] M. Yamaguchi,et al. Expression of functional TrkA receptor tyrosine kinase in the HMC-1 human mast cell line and in human mast cells. , 1997, Blood.
[42] R Wagner,et al. Tumour necrosis factor-α induces ectopic activity in nociceptive primary afferent fibres , 1997, Neuroscience.
[43] R. Gracely,et al. NGF involvement in pain induced by chronic constriction injury of the rat sciatic nerve , 1997, Neuroreport.
[44] M. Tal,et al. Local injection of nerve growth factor (NGF) triggers degranulation of mast cells in rat paw , 1997, Neuroscience Letters.
[45] L. Sorkin,et al. Tumour necrosis factor-alpha induces ectopic activity in nociceptive primary afferent fibres. , 1997, Neuroscience.
[46] L. Petrelli,et al. N-(2-hydroxyethyl)hexadecanamide is orally active in reducing edema formation and inflammatory hyperalgesia by down-modulating mast cell activation. , 1996, European journal of pharmacology.
[47] A. Buriani,et al. Mast cells express a peripheral cannabinoid receptor with differential sensitivity to anandamide and palmitoylethanolamide. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[48] A. Buriani,et al. Mast cells synthesize, store, and release nerve growth factor. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[49] E. Johnson,et al. Mediator release from mast cells by nerve growth factor. Neurotrophin specificity and receptor mediation. , 1993, The Journal of biological chemistry.
[50] Y. Kitamura,et al. Nerve growth factor induces development of connective tissue-type mast cells in vitro from murine bone marrow cells , 1991, The Journal of experimental medicine.
[51] Gary J. Bennett,et al. A peripheral mononeuropathy in rat that produces disorders of pain sensation like those seen in man , 1988, Pain.
[52] R. Dubner,et al. A new and sensitive method for measuring thermal nociception in cutaneous hyperalgesia , 1987, Pain.
[53] M. Zimmermann,et al. Ethical guidelines for investigations of experimental pain in conscious animals , 1983, Pain.
[54] K. Melmon,et al. FATTY ACID AMIDES OF ETHANOLAMINE IN MAMMALIAN TISSUES. , 1965, The Journal of biological chemistry.