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首页> 外文期刊>Current drug targets-The International journal for timely in-depth reviews on drug targets >Co-morbidity and self medication in schizophrenia: Involvement of endogenous morphine signaling mechanisms
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Co-morbidity and self medication in schizophrenia: Involvement of endogenous morphine signaling mechanisms

机译:精神分裂症的合并症和自我用药:内源性吗啡信号传导机制的参与

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For over 30 years, empirical studies have demonstrated expression of chemically authentic morphine by diverse animal tissues and organs systems. De novo biosynthesis of endogenous morphine by animal cells displays striking similarities to the multi-enzyme mediated biosynthetic pathway previously characterized in great biochemical and molecular detail in opium poppy (Papaver somniferum). The committed enzyme step within this pathway involves an asymmetric Pictet-Spengler condensation of dopamine (DA) and 3,4 dihydroxyphenylacetaldehyde (DOPAL), the oxidation product of L- 3,4-dihydroxyphenylalanine (L-DOPA), to form the essential intermediate precursor tetrahydropapaveroline (THP). We have hypothesized that endogenous morphine is synthesized within peripheral sites via conversion of THP in a regulated biosynthetic pathway, or conversely, THP may be directly transported into the CNS and converted to endogenous morphine within a similar biosynthetic pathway. The fundamental chemical relationship of the prototype catecholamine DA and its immediate precursor L-DOPA to endogenous morphine expression indicates a novel reciprocally interactive mechanism that links catecholamine and "morphinergic" pathways in the activation and inhibition of key physiological responses, including higher order neural integration. Dysregulation of interactive DAergic and "morphinergic" signaling pathways within CNS foci may contribute to the etiological factors driving co-morbid behavioral syndromes in major psychiatric disorders. Our short review is designed to provide insights on comorbidity and self-medication in schizophrenia from a novel perspective involving endogenous morphine signaling mechanisms.
机译:30多年来,经验研究表明,各种动物组织和器官系统均可表达化学上可靠的吗啡。动物细胞从头开始生物合成内源性吗啡显示出与以前由鸦片罂粟(Papaver somniferum)的大量生化和分子细节所表征的多酶介导的生物合成途径惊人的相似性。该途径中的固定酶步骤涉及多巴胺(DA)与3,4-二羟基苯基乙醛(DOPAL)(L-3,4-二羟基苯基丙氨酸(L-DOPA)的氧化产物)的不对称Pictet-Spengler缩合反应前体四氢罂粟碱(THP)。我们假设内源性吗啡是通过调节生物合成途径中THP的转化在外围位点合成的,或者相反,THP可能直接转运到CNS中并在相似的生物合成途径中转化为内源性吗啡。原型儿茶酚胺DA及其直接前体L-DOPA与内源性吗啡表达之间的基本化学关系表明了一种新颖的交互作用机制,该机制将儿茶酚胺和“吗啡能”途径连接和激活了关键的生理反应,包括更高阶的神经整合。中枢神经系统病灶内的交互性DA能和“吗啡能”信号通路失调可能是导致主要精神病患者共病行为综合征的病因。我们的简短审查旨在从涉及内源性吗啡信号传导机制的新观点,为精神分裂症合并症和自我用药提供见识。

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