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精神分裂症中纹状体腺苷A(2A)受体的上调

Up-regulation of striatal adenosine A(2A) receptors in schizophrenia.

作者信息

Deckert Jürgen, Brenner Markus, Durany Nuria, Zöchling Robert, Paulus Werner, Ransmayr Gerhard, Tatschner Thomas, Danielczyk Walter, Jellinger Kurt, Riederer Peter

机构信息

Department of Psychiatry, University of Würzburg, Germany.

出版信息

Neuroreport. 2003 Mar 3;14(3):313-6. doi: 10.1097/00001756-200303030-00003.

Abstract

Adenosine A (2A) receptors have been implicated in the pathophysiology of schizophrenia by clinical, anatomical, biochemical and genetic studies. We hypothesized that a genetically determined low number of adenosine A (2A) receptors could be a vulnerability factor for the development of the disease. The density of adenosine A (2A) receptors was investigated in human postmortem striatum of patients with schizophrenia (n = 9) and matched controls ( n= 9) using [ H)CGS 21680 as a radioligand probe. The maximum number of binding sites (B) (max) was 70% higher in patients with schizophrenia than in matched controls (609.4 +/- 259.1 354.0 +/- 156.4 fmol/mg protein, p=0.04). No significant difference could be discerned for the affinity of caffeine for adenosine A receptors between patients and controls. The increase in receptor density correlated with the dose of antipsychotic medication in chlorpromazine equivalents (r =0.61, = 0.014). We failed to provide evidence for a genetically determined reduction of adenosine A 2(A) receptors in schizophrenia. Instead, consistent with findings from animal experiments, our observation supports a role of adenosine A (2A) receptors in the molecular effects of antipsychotic drugs.

摘要

临床、解剖学、生物化学及遗传学研究均表明,腺苷A2A受体与精神分裂症的病理生理学机制相关。我们推测,基因决定的腺苷A2A受体数量减少可能是该病发生的一个易患因素。使用[H]CGS 21680作为放射性配体探针,对精神分裂症患者(n = 9)和匹配的对照组(n = 9)的人类死后纹状体中腺苷A2A受体的密度进行了研究。精神分裂症患者的最大结合位点数(Bmax)比匹配的对照组高70%(分别为609.4±259.1和354.0±156.4 fmol/mg蛋白质,p = 0.04)。患者与对照组之间咖啡因对腺苷A受体的亲和力无显著差异。受体密度的增加与以氯丙嗪等效剂量表示的抗精神病药物剂量相关(r = 0.61,p = 0.014)。我们未能找到证据支持精神分裂症患者存在基因决定的腺苷A2A受体减少。相反,与动物实验结果一致,我们的观察结果支持腺苷A2A受体在抗精神病药物分子效应中的作用。

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