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精神分裂症、双相情感障碍和重度抑郁症中的海马体突触病理学:对复合体mRNA的研究

Hippocampal synaptic pathology in schizophrenia, bipolar disorder and major depression: a study of complexin mRNAs.

作者信息

Eastwood S L, Harrison P J

机构信息

Departments of Psychiatry and Clinical Neurology (Neuropathology), University of Oxford, UK.

出版信息

Mol Psychiatry. 2000 Jul;5(4):425-32. doi: 10.1038/sj.mp.4000741.

Abstract

Complexin (cx) I and cx II are synaptic proteins preferentially expressed by inhibitory and excitatory hippocampal neurons respectively. We previously reported decreased hippocampal formation cx mRNA and protein expression in schizophrenia, with a greater loss of cx II than cx I. The present in situ hybridization study was both an attempt at replication, and an extension to include bipolar and unipolar mood disorders, using sections from the Stanley Foundation brain series. In schizophrenia, both mRNAs were decreased in some hippocampal subfields, especially CA4, but were preserved in subiculum. The cx II/cx I mRNA ratio was unchanged. In bipolar disorder, the mRNAs were reduced in CA4, subiculum and parahippocampal gyrus, with the deficit in subiculum being diagnostically specific. No alterations in cx mRNAs were found in major depression. Treatment of rats with antipsychotics (haloperidol or chlorpromazine) for 2 weeks had no effect on hippocampal cx mRNAs. These data replicate the finding of decreased cx I and cx II expression in the hippocampus in schizophrenia and show a similar or greater abnormality in bipolar disorder. Non-replication of the cx II > cx I mRNA loss in schizophrenia means that the hypothesis of a preferential involvement of excitatory connections was not supported. The results extend the emerging evidence that altered circuitry may be a component of the neuroanatomy of both schizophrenia and bipolar mood disorder.

摘要

复合体蛋白(cx)I和cx II是分别优先由海马抑制性神经元和兴奋性神经元表达的突触蛋白。我们之前报道过,精神分裂症患者海马结构中cx的mRNA和蛋白表达降低,其中cx II的减少比cx I更明显。本原位杂交研究既是一次重复验证的尝试,也是一次扩展研究,纳入了双相情感障碍和单相情感障碍,使用的是斯坦利基金会脑库系列的切片。在精神分裂症中,两种mRNA在某些海马亚区尤其是CA4区减少,但在海马下托中保留。cx II/cx I mRNA比值未改变。在双相情感障碍中,CA4区、海马下托和海马旁回的mRNA减少,海马下托的缺陷具有诊断特异性。在重度抑郁症中未发现cx mRNA有改变。用抗精神病药物(氟哌啶醇或氯丙嗪)治疗大鼠2周对海马cx mRNA没有影响。这些数据重复了精神分裂症患者海马中cx I和cx II表达降低的发现,并显示双相情感障碍中有相似或更严重的异常。精神分裂症中cx II > cx I mRNA丢失未被重复验证,这意味着兴奋性连接优先受累的假说未得到支持。这些结果扩展了新出现的证据,即电路改变可能是精神分裂症和双相情感障碍神经解剖学的一个组成部分。

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