Role of peroxynitrite in morphine hyperalgesia and tolerance
Role of peroxynitrite in morphine hyperalgesia and tolerance
批准号:
7524388
负责人:
DANIELA SALVEMINI
金额:
$35.15万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-01 至 2013-05-31
关键词:
3-nitrotyrosineAcuteAdverse effectsAffectAmericanAnalgesicsApoptosisApoptoticAppearanceAttenuatedBehavioralBiochemicalBiochemical PathwayChronicDataDevelopmentDoseEtiologyEventExcisionFigs - dietaryGeneticGlutamate TransporterGlutamate-Ammonia LigaseGoalsHyperalgesiaHypersensitivityInflammationInflammatoryInfusion proceduresKnockout MiceLinkMedicalMethodsMolecularMorphineMorphine SulfateMusN-Methyl-D-Aspartate ReceptorsNADPH OxidaseNecrosisNeurogliaNeuronsNitric OxideNitric Oxide SynthaseNitrogenNuclearOpiatesOpioidPainPain managementPathway interactionsPatientsPeroxonitritePharmaceutical PreparationsPoly(ADP-ribose) PolymerasesProductionProductivityPublic HealthQuality of lifeRattusReactive Nitrogen SpeciesRelative (related person)RoleSignal TransductionSourceSpinalSpinal CordSpinal cord posterior hornStimulusSuperoxidesTestingTimeTissuesWorkacetovanilloneattenuationcatalystchronic paincostcytokinedorsal hornfrontierimprovedinhibitor/antagonistnitrationnoveloxidative DNA damagepreventsocioeconomics
中文摘要
描述(由申请人提供):阿片类药物如硫酸吗啡是治疗急性和慢性剧烈疼痛最有效的镇痛药,但由于对无害和有害刺激的耐受性和超敏性的发展,它们的使用受到限制。这种阿片类药物引起的痛觉过敏和抗痛觉耐受性的机制尚不清楚。由超氧化物(O2.-)和一氧化氮(O2.-)生成过氧亚硝酸盐(ONOO-)。一氧化氮(NO)是一种有效的促炎和促凋亡的活性氮,现在与痛觉过敏有关。我们的中心假设是,内源性ONOO-是导致吗啡诱导的痛觉过敏和抗痛觉耐受性的一系列信号事件的近端分子。在小鼠中,我们发现反复给药吗啡会导致硝基酪氨酸(NT, ONOO-的一种标记物)的形成。ONOO-的作用被证明是通过显示联合使用吗啡抑制剂。NO合成酶,O2清道夫。-或新的ONOO-分解催化剂减弱了NT的形成并阻止了抗伤耐受性。这些涉及ONOO和抗伤性耐受性的关联和因果联系符合:1)翻译后MnSOD、谷氨酸转运体(GLT-1)和谷氨酰胺合成酶(GS)的硝化作用;2)促炎细胞因子形成增加;3) DNA氧化损伤和核因子聚核糖(adp -核糖)聚合酶的激活。抑制ONOO-可减弱这些变化。最后,通过气管内给药证实了ONOO-分解催化剂的系统给药结果,从而支持其在脊髓水平上的作用。三个具体目标将检验我们的假设。特异性目的1将确定脊髓ONOO-与吗啡诱导的超敏反应和抗伤害性耐受之间的关联和因果关系。具体目标2将确定,使用药理学和遗传学方法,NADPH氧化酶作为O2来源的贡献。因此,在吗啡超敏反应和抗伤害性耐受的发展过程中,从头形成ONOO。特异性目的3将阐明ONOO-调节痛觉过敏和抗痛觉耐受性的分子和生化机制。这些研究的结果将确定ONOO-在抗痛觉耐受性发展中的重要作用,为开发ONOO-分解催化剂作为阿片类药物的辅助剂用于治疗慢性疼痛提供理论依据。项目简介:慢性疼痛影响了大约8600万美国人,每年至少花费1000亿美元用于医疗费用和降低工作效率。阿片类药物(如吗啡)是治疗严重慢性疼痛最有效的镇痛药,但在长期给药过程中,其镇痛作用往往减弱,需要增加剂量,从而降低患者的生活质量。我们的研究将首次确定用新型药物去除过氧亚硝酸盐,恢复吗啡的镇痛作用,为慢性疼痛管理开辟了新的前沿,从而改善了相关的社会经济后果。
英文摘要
DESCRIPTION (provided by applicant): Opiates like morphine sulfate are the most effective analgesics for treating acute and chronic severe pain, but their use is limited by development of tolerance and hypersensitivity to innocuous and noxious stimuli. The mechanisms of such opiate-induced hyperalgesia and antinociceptive tolerance are unclear. Peroxynitrite (ONOO-) produced from superoxide (O2.-) and nitric oxide (.NO), is a potent pro-inflammatory and pro- apoptotic reactive nitrogen species now implicated in hyperalgesia. Our central HYPOTHESIS is that endogenous ONOO- is the proximal molecule in a cascade of signaling events leading to morphine-induced hyperalgesia and antinociceptive tolerance. In mice we showed that repeated morphine administration leads to nitrotyrosine (NT, a marker of ONOO-) formation. The role of ONOO- was proven by showing that co- administering morphine with inhibitors of .NO synthase, scavengers of O2.- or novel ONOO- decomposition catalysts attenuated NT formation and prevented antinociceptive tolerance. These associative and causal links involving ONOO- and antinociceptive tolerance coincided with: 1) post-translational nitration of MnSOD, a glutamate transporter (GLT-1), and glutamine synthase (GS); 2) increased formation of pro-inflammatory cytokines; and 3) oxidative DNA damage and activation of the nuclear factor poly(ADP-ribose) polymerase. Inhibiting ONOO- attenuated these changes. Finally, results with systemic administration of ONOO- decomposition catalysts were confirmed by intrathechal dosing, thus supporting its role at the level of the spinal cord. Three Specific Aims will test our hypothesis. Specific Aim 1 will define the associative and causal link between spinal ONOO- and the development of morphine-induced hypersensitivity and antinociceptive tolerance. Specific Aim 2 will identify, using pharmacological and genetic approaches, the contribution of the NADPH oxidase as source of O2.- and thus, de novo ONOO- formation during the development of morphine hypersensitivity and antinociceptive tolerance. Specific Aim 3 will elucidate the molecular and biochemical mechanisms whereby ONOO- modulates hyperalgesia and antinociceptive tolerance. Results from these studies will define the important role of ONOO- in the development of antinociceptive tolerance providing the rationale towards the development of ONOO- decomposition catalysts as adjuncts to opiates for the management of chronic pain. Project Narrative: Chronic pain affects approximately 86 million Americans and cost at least $100 billion annually in medical expenses and reduced work productivity. PUBLIC HEALTH RELEVANCE Opioid drugs such as morphine are the most effective analgesics for treating severe chronic pain, but its pain-relieving action is often diminished during chronic administration, necessitating dose escalation that reduces quality of life for the patient. Our studies will determine for the first time that removal of peroxynitrite with novel agents, restores the pain-relieving action of morphine opening a new frontier in chronic pain management thereby improving the associated socioeconomic consequences.
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