Ultrastructural disturbances in microglia-neuron interactions in the head of the caudate nucleus in schizophrenia.

IF 3.5 3区 医学 Q1 CLINICAL NEUROLOGY European Archives of Psychiatry and Clinical Neuroscience Pub Date : 2024-12-28 DOI:10.1007/s00406-024-01956-z
Natalya A Uranova, Olga V Vikhreva, Valentina I Rakhmanova
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Abstract

Previously we found altered microglia-neuron interactions in the prefrontal cortex in schizophrenia. We hypothesized that microglia-neuron interactions may be dysregulated in the caudate nucleus in schizophrenia. A postmortem ultrastructural morphometric study was performed to investigate satellite microglia (SatMg) and adjacent neurons in the head of the caudate nucleus in 21 cases of schizophrenia and 20 healthy controls. We found increased microglial density in young schizophrenia patients compared to elderly controls. Volume density (Vv) and the number (N) of mitochondria were lower and total area of vacuoles of endoplasmic reticulum was higher in SatMg in the schizophrenia group compared to controls. The mitochondrial decline has progressed with age and illness duration. Areas of neuronal somata, nucleus, mitochondria and vacuoles of endoplasmic reticulum were significantly higher in schizophrenia compared to controls. These neuronal parameters were positively correlated with area and Vv of vacuoles of endoplasmic reticulum in SatMg in the schizophrenia group but not in the control group. Besides, area of mitochondria in neurons was negatively correlated with N of mitochondria in SatMg. Vv of lipofuscin granules in neurons was higher in elderly patients compared to young patients and was positively correlated with age, illness duration and Vv of lipofuscin granules in SatMg in the schizophrenia group. The disturbances of SatMg-neuronal interactions may be related to the endoplasmic reticulum stress, alterations and deficit of mitochondria in SatMg due to chronic stress, activation and priming of SatMg followed by neurotoxicity. SatMg may participate in neuronal aging in schizophrenia.

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精神分裂症尾状核头部小胶质细胞-神经元相互作用的超微结构紊乱。
先前我们发现精神分裂症患者前额皮质小胶质细胞与神经元的相互作用发生了改变。我们假设精神分裂症患者尾状核中的小胶质细胞-神经元相互作用可能失调。对21例精神分裂症患者和20例健康对照者的尾状核头部卫星小胶质细胞(SatMg)及其邻近神经元进行了死后超微结构形态学研究。我们发现,与老年对照相比,年轻精神分裂症患者的小胶质细胞密度增加。与对照组相比,SatMg组线粒体体积密度(Vv)和线粒体数量(N)较低,内质网空泡总面积较高。线粒体的衰退随着年龄的增长和病程的延长而加剧。精神分裂症患者的神经元体、细胞核、线粒体和内质网空泡面积明显高于对照组。这些神经元参数在精神分裂症组与内质网空泡面积和Vv呈正相关,而在对照组无显著性差异。此外,SatMg神经元线粒体面积与线粒体N呈负相关。老年患者神经元中脂褐素颗粒的Vv高于年轻患者,且与年龄、病程、SatMg中脂褐素颗粒的Vv呈正相关。SatMg-神经元相互作用的紊乱可能与内质网应激、慢性应激引起的SatMg线粒体的改变和缺陷、SatMg的激活和启动以及随后的神经毒性有关。SatMg可能参与精神分裂症的神经元老化。
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来源期刊
CiteScore
8.80
自引率
4.30%
发文量
154
审稿时长
6-12 weeks
期刊介绍: The original papers published in the European Archives of Psychiatry and Clinical Neuroscience deal with all aspects of psychiatry and related clinical neuroscience. Clinical psychiatry, psychopathology, epidemiology as well as brain imaging, neuropathological, neurophysiological, neurochemical and moleculargenetic studies of psychiatric disorders are among the topics covered. Thus both the clinician and the neuroscientist are provided with a handy source of information on important scientific developments.
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