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双相情感障碍患者和精神分裂症患者海马体中D1受体mRNA的细胞分布差异。

Differences in the cellular distribution of D1 receptor mRNA in the hippocampus of bipolars and schizophrenics.

作者信息

Pantazopoulos Harry, Stone David, Walsh John, Benes Francine M

机构信息

Laboratory for Structural and Molecular Neuroscience, McLean Hospital, Belmont, Massachusetts 02478, USA.

出版信息

Synapse. 2004 Dec 1;54(3):147-55. doi: 10.1002/syn.20076.

Abstract

Several lines of evidence have pointed to a role of the dopamine system in the pathophysiology of schizophrenia. A recent postmortem study demonstrated a selective decrease of tyrosine hydroxylase fibers on pyramidal neurons in sector CA2 in the hippocampus of schizophrenics. Although both brain imaging and postmortem studies have examined the distribution of the D1 receptor in the prefrontal and cingulate cortex, no study to date has examined its expression of mRNA using a high-resolution autoradiographic approach. In order to further assess whether the regulation of the dopamine D1 receptor is altered in hippocampal neurons in this disorder, we used in situ hybridization (ISH) to measure the expression of messenger RNA for this receptor in the dentate gyrus and sectors CA1-4. Both the number of cells expressing D1 mRNA and the amount of expression per cell were measured in 15 schizophrenic, 15 bipolar disorder, and 15 normal control subjects. The results show a significant (21%) and selective decrease in D1 mRNA expression in sector CA3 of schizophrenic subjects. First-degree relatives of schizophrenics did not show any differences in either the expression of D1 mRNA per cell or the number of cells expressing this mRNA when compared to a separate group of normal controls matched for age and PMI. Subjects with bipolar disorder also showed a significant (25%) and selective increase of D1 mRNA expression in sector CA2. Other hippocampal sectors did not show significant changes. These findings in schizophrenics and bipolars were also associated with inverse changes in the overall number of neurons expressing D1 mRNA in sectors CA3 and CA2, respectively. This study shows diagnosis-specific changes in D1 mRNA expression in the hippocampus of schizophrenic versus bipolar subjects and suggests that this neuromodulatory system may show distinct changes in the pathophysiology of the two disorders.

摘要

多条证据表明多巴胺系统在精神分裂症的病理生理学中发挥作用。最近一项尸检研究表明,精神分裂症患者海马体CA2区锥体细胞上的酪氨酸羟化酶纤维有选择性减少。尽管脑成像和尸检研究都已检测了前额叶和扣带回皮质中D1受体的分布,但迄今为止尚无研究使用高分辨率放射自显影方法检测其mRNA的表达。为了进一步评估该疾病中海马神经元中多巴胺D1受体的调节是否改变,我们采用原位杂交(ISH)来测量齿状回和CA1 - 4区中该受体信使RNA的表达。在15名精神分裂症患者、15名双相情感障碍患者和15名正常对照受试者中测量了表达D1 mRNA的细胞数量以及每个细胞的表达量。结果显示,精神分裂症患者CA3区的D1 mRNA表达显著(21%)且选择性降低。与另一组年龄和PMI匹配的正常对照相比,精神分裂症患者的一级亲属在每个细胞的D1 mRNA表达或表达该mRNA的细胞数量上均未显示出任何差异。双相情感障碍患者在CA2区也显示出D1 mRNA表达显著(25%)且选择性增加。海马体的其他区域未显示出显著变化。精神分裂症患者和双相情感障碍患者的这些发现还分别与CA3区和CA2区中表达D1 mRNA的神经元总数的反向变化相关。这项研究显示了精神分裂症患者与双相情感障碍患者海马体中D1 mRNA表达的诊断特异性变化,并表明该神经调节系统在这两种疾病的病理生理学中可能表现出不同的变化。

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