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注意力缺陷多动障碍存在线粒体功能障碍。

Attention deficit-hyperactivity disorder suffers from mitochondrial dysfunction.

作者信息

Verma Poonam, Singh Alpana, Nthenge-Ngumbau Dominic Ngima, Rajamma Usha, Sinha Swagata, Mukhopadhyay Kanchan, Mohanakumar Kochupurackal P

机构信息

CSIR-Indian Institute of Chemical Biology, Laboratory of Clinical & Experimental Neurosciences, Cell Biology & Physiology Division, 4, Raja S.C. Mullick Road, Kolkata - 700032, India.

Manovikas Biomedical Research and Diagnostic Centre, Manovikas Kendra, 482, Madudah, Sector-J, Eastern Metropolitan Bypass, Kolkata 700 017, India.

出版信息

BBA Clin. 2016 Oct 18;6:153-158. doi: 10.1016/j.bbacli.2016.10.003. eCollection 2016 Dec.

Abstract

BACKGROUND

Pathophysiology of attention-deficit hyperactivity disorder (ADHD) is not known, and therefore the present study investigated mitochondrial defects, if any in cybrids created from patients and control population.

METHODS

To investigate mitochondrial pathology in ADHD, cybrids cell lines were created from ADHD probands and controls by fusing their platelets with ρ-cells prepared from SH-SY5Y neuroblastoma cell line. Cellular respiration, oxidative stress, mitochondrial membrane potential and morphology were evaluated employing oxygraph, mitochondria-specific fluorescence staining and evaluation by FACS, and immunocytochemistry. HPLC-electrochemical detection, quantitative RT-PCR and Blue Native PAGE were employed respectively for assays of serotonin, mitochondrial ATPase 6/8 subunits levels and complex V activity.

RESULTS

Significantly low cellular and mitochondrial respiration, ATPase6/8 transcripts levels, mitochondrial complex V activity and loss of mitochondrial membrane potential and elevated oxidative stress were observed in ADHD cybrids. Expression of monoamine oxidizing mitochondrial enzymes, MAO-A and MAO-B levels remained unaffected. Two-fold increase in serotonin level was noted in differentiated cybrid-neurons.

CONCLUSIONS

Since cybrids are shown to replicate mitochondrial defects seen in post-mortem brains, these observed defects in ADHD cybrids strongly suggest mitochondrial pathology in this disorder.

GENERAL SIGNIFICANCE

Mitochondrial defects are detected in ADHD cybrids created from patients' platelets, implying bioenergetics crisis in the mitochondria could be a contributory factor for ADHD pathology and/or phenotypes.

摘要

背景

注意缺陷多动障碍(ADHD)的病理生理学尚不清楚,因此本研究调查了由患者和对照人群构建的胞质杂种细胞中是否存在线粒体缺陷。

方法

为了研究ADHD中的线粒体病理,通过将ADHD先证者和对照者的血小板与从SH-SY5Y神经母细胞瘤细胞系制备的ρ细胞融合,构建了胞质杂种细胞系。采用氧电极、线粒体特异性荧光染色、流式细胞术评估和免疫细胞化学方法,对细胞呼吸、氧化应激、线粒体膜电位和形态进行了评估。分别采用高效液相色谱-电化学检测、定量逆转录-聚合酶链反应和蓝色天然聚丙烯酰胺凝胶电泳检测血清素、线粒体ATP酶6/8亚基水平和复合物V活性。

结果

在ADHD胞质杂种细胞中观察到细胞和线粒体呼吸显著降低、ATP酶6/8转录本水平降低、线粒体复合物V活性降低、线粒体膜电位丧失以及氧化应激升高。单胺氧化线粒体酶MAO-A和MAO-B的表达水平未受影响。在分化的胞质杂种神经元中,血清素水平增加了两倍。

结论

由于胞质杂种细胞显示出在死后大脑中观察到的线粒体缺陷,因此在ADHD胞质杂种细胞中观察到的这些缺陷强烈提示该疾病存在线粒体病理。

一般意义

在由患者血小板构建的ADHD胞质杂种细胞中检测到线粒体缺陷,这意味着线粒体生物能量危机可能是ADHD病理和/或表型的一个促成因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3613/5121149/1c9f498e9764/gr1.jpg

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