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本文引用的文献

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Imaging Alzheimer pathology in late-life depression with PET and Pittsburgh Compound-B.使用正电子发射断层扫描(PET)和匹兹堡化合物-B对老年抑郁症患者的阿尔茨海默病病理进行成像。
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Assessment of serum macro and trace element homeostasis and the complexity of inter-element relations in bipolar mood disorders.
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Atrial extracellular matrix remodelling in patients with atrial fibrillation.心房颤动患者的心房细胞外基质重塑
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DNA damage in bipolar disorder.双相情感障碍中的DNA损伤。
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DNA fragmentation is increased in non-GABAergic neurons in bipolar disorder but not in schizophrenia.双相情感障碍中非γ-氨基丁酸能神经元的DNA片段化增加,但精神分裂症中未出现这种情况。
Schizophr Res. 2007 Jul;93(1-3):33-41. doi: 10.1016/j.schres.2007.01.030. Epub 2007 Apr 17.
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Increased oxidative stress and DNA damage in bipolar disorder: a twin-case report.双相情感障碍中氧化应激增加与DNA损伤:一例双生子病例报告。
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Increased oxidative stress in submitochondrial particles after chronic amphetamine exposure.慢性苯丙胺暴露后亚线粒体颗粒中氧化应激增加。
Brain Res. 2006 Jun 30;1097(1):224-9. doi: 10.1016/j.brainres.2006.04.076. Epub 2006 May 30.
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Studies on genomic DNA topology and stability in brain regions of Parkinson's disease.帕金森病脑区基因组DNA拓扑结构与稳定性的研究。
Arch Biochem Biophys. 2006 May 15;449(1-2):143-56. doi: 10.1016/j.abb.2006.02.018. Epub 2006 Mar 10.
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The expression of proapoptosis genes is increased in bipolar disorder, but not in schizophrenia.促凋亡基因的表达在双相情感障碍中增加,但在精神分裂症中未增加。
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Magnetic resonance findings in bipolar disorder.双相情感障碍的磁共振成像结果
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新证据表明铁、铜积累和锌耗竭及其与衰老人脑区域 DNA 完整性的相关性。

New evidence on iron, copper accumulation and zinc depletion and its correlation with DNA integrity in aging human brain regions.

机构信息

Department of Biochemistry and Nutrition, Central Food and Technological Research Institute, Mysore -570 020, India.

出版信息

Indian J Psychiatry. 2010 Apr;52(2):140-4. doi: 10.4103/0019-5545.64590.

DOI:10.4103/0019-5545.64590
PMID:20838501
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2927883/
Abstract

Deoxyribonucleic acid (DNA) conformation and stability play an important role in brain function. Earlier studies reported alterations in DNA integrity in the brain regions of neurological disorders like Parkinson's and Alzheimer's diseases. However, there are only limited studies on DNA stability in an aging brain and the factors responsible for genomic instability are still not clear. In this study, we assess the levels of Copper (Cu), Iron (Fe) and Zinc (Zn) in three age groups (Group I: below 40 years), Group II: between 41-60 years) and Group III: above 61 years) in hippocampus and frontal cortex regions of normal brains. The number of samples in each group was eight. Genomic DNA was isolated and DNA integrity was studied by nick translation studies and presented as single and double strand breaks. The number of single strand breaks correspondingly increased with aging compared to double strand breaks. The strand breaks were more in frontal cortex compared to hippocampus. We observed that the levels of Cu and Fe are significantly elevated while Zn is significantly depleted as one progresses from Group I to Group III, indicating changes with aging in frontal cortex and hippocampus. But the elevation of metals was more in frontal cortical region compared to hippocampal region. There was a clear correlation between Cu and Fe levels versus strand breaks in aging brain regions. This indicates that genomic instability is progressive with aging and this will alter the gene expressions. To our knowledge, this is a new comprehensive database to date, looking at the levels of redox metals and corresponding strand breaks in DNA in two brain regions of the aging brain. The biological significance of these findings with relevance to mental health will be discussed.

摘要

脱氧核糖核酸(DNA)的构象和稳定性在大脑功能中起着重要作用。早期的研究报告称,在帕金森病和阿尔茨海默病等神经退行性疾病的大脑区域,DNA 完整性发生了改变。然而,关于衰老大脑中 DNA 稳定性的研究还很有限,导致基因组不稳定的因素仍不清楚。在这项研究中,我们评估了三个年龄组(I 组:40 岁以下;II 组:41-60 岁;III 组:61 岁以上)海马体和额叶皮质区域中铜(Cu)、铁(Fe)和锌(Zn)的水平。每组样本数为 8 个。提取基因组 DNA,通过缺口平移研究研究 DNA 完整性,并表示为单链和双链断裂。与双链断裂相比,单链断裂相应地随着年龄的增长而增加。与海马体相比,额叶皮质的断裂更多。我们观察到,随着从 I 组到 III 组的进展,Cu 和 Fe 的水平显著升高,而 Zn 的水平显著下降,表明额叶皮质和海马体随年龄发生变化。但与海马体区域相比,金属在额叶皮质区域的升高更为明显。衰老大脑区域中 Cu 和 Fe 水平与链断裂之间存在明显的相关性。这表明基因组不稳定性随着年龄的增长而逐渐增加,这将改变基因表达。据我们所知,这是迄今为止最新的一个全面数据库,研究了衰老大脑两个区域中氧化还原金属的水平和相应的 DNA 链断裂。这些发现与心理健康相关的生物学意义将进行讨论。