注意缺陷多动障碍儿童的 BDNF、proBDNF 和 proBDNF/BDNF 比值与脑电图异常的关系:与认知能力和严重程度的可能关系。

IF 1.7 4区 医学 Q3 DEVELOPMENTAL BIOLOGY
Mostafa M. El-Saied, Omneya Afify, Ehab R. Abdelraouf, Azza Oraby, Adel F. Hashish, Hala M. Zeidan
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引用次数: 0

摘要

有研究表明,伴有或不伴有亚临床致痫性放电(SED)的注意力缺陷多动障碍(ADHD)会对ADHD患儿的认知能力产生负面影响。脑源性神经营养因子(BDNF)及其前体原BDNF在多动症中的作用亟待研究。研究的目的是评估血清 BDNF、proBDNF 和 proBDNF/BDNF 比率的水平,以及 SED 对儿童认知能力和多动症严重程度的潜在影响。研究对象包括30名脑电图(EEG)正常的多动症儿童(G1)、30名SED儿童(G2)和30名健康儿童(G3)。对儿童的认知能力和障碍的严重程度进行了评估。生化指标通过酶联免疫吸附法测定。同时患有 SED 和夜间遗尿症会对认知过程产生有害影响,但对严重程度没有影响。G2 组儿童中最常见的是局灶性致痫放电。第 1 组和第 2 组的 BDNF 水平低于第 3 组。ProBDNF/BDNF 比率较高可能与 BDNF 水平较低而非 ProBDNF 水平较高有关。本研究的结果突显了调查多动症儿童是否存在SED和夜间遗尿症的重要性。建议有针对性地加强同时患有多动症和SED的儿童的认知能力。proBDNF在多动症病理生理学中的作用还需要进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BDNF, proBDNF and proBDNF/BDNF ratio with electroencephalographic abnormalities in children with attention deficit hyperactivity disorder: Possible relations to cognition and severity

Attention deficit hyperactivity disorder (ADHD) with and without subclinical epileptogenic discharges (SED) have been suggested to negatively affect cognitive abilities of children with ADHD. The role of brain-derived neurotrophic factor (BDNF) and its precursor proBDNF in ADHD is in need of being investigated. The aims were to evaluate the levels of serum BDNF, proBDNF and the proBDNF/BDNF ratio in addition to the potential impacts of SED on the children's cognitive abilities and the severity of ADHD. The included participants with ADHD were 30 children with normal electroencephalogram (EEG) (G1) and 30 children with SED (G2), together with 30 healthy children (G3). The cognitive abilities and severity of the disorder were evaluated. The biochemical measures were determined by ELISA. The presence of coexisting SED and nocturnal enuresis has led to a deleterious effect on cognitive processes but not on the severity. The focal epileptogenic discharge was the most common among children in G2. The levels of BDNF in Groups 1 and 2 were less than those in G3. The higher proBDNF/BDNF ratio could be related to the low BDNF levels rather than high proBDNF levels. The findings of this study highlight the importance of investigating the presence of SED and nocturnal enuresis in children with ADHD. Targeting strengthening of cognitive abilities in children with coexisting ADHD and SED is advised. The role of proBDNF in the pathophysiology of ADHD needs further investigation.

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来源期刊
CiteScore
3.30
自引率
5.60%
发文量
78
审稿时长
6-12 weeks
期刊介绍: International Journal of Developmental Neuroscience publishes original research articles and critical review papers on all fundamental and clinical aspects of nervous system development, renewal and regeneration, as well as on the effects of genetic and environmental perturbations of brain development and homeostasis leading to neurodevelopmental disorders and neurological conditions. Studies describing the involvement of stem cells in nervous system maintenance and disease (including brain tumours), stem cell-based approaches for the investigation of neurodegenerative diseases, roles of neuroinflammation in development and disease, and neuroevolution are also encouraged. Investigations using molecular, cellular, physiological, genetic and epigenetic approaches in model systems ranging from simple invertebrates to human iPSC-based 2D and 3D models are encouraged, as are studies using experimental models that provide behavioural or evolutionary insights. The journal also publishes Special Issues dealing with topics at the cutting edge of research edited by Guest Editors appointed by the Editor in Chief. A major aim of the journal is to facilitate the transfer of fundamental studies of nervous system development, maintenance, and disease to clinical applications. The journal thus intends to disseminate valuable information for both biologists and physicians. International Journal of Developmental Neuroscience is owned and supported by The International Society for Developmental Neuroscience (ISDN), an organization of scientists interested in advancing developmental neuroscience research in the broadest sense.
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