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胆碱在神经发育障碍中的作用——一篇聚焦于 ASC、ADHD 和诵读困难的叙述性综述。

The Role of Choline in Neurodevelopmental Disorders-A Narrative Review Focusing on ASC, ADHD and Dyslexia.

机构信息

Nutritional Insight, Surrey KT17 2AA, UK.

Department of Psychiatry, Faculty of Medicine, Chulalongkorn University, Bangkok 4002, Thailand.

出版信息

Nutrients. 2023 Jun 25;15(13):2876. doi: 10.3390/nu15132876.

Abstract

Neurodevelopmental disorders appear to be rising in prevalence, according to the recent Global Burden of Disease Study. This rise is likely to be multi-factorial, but the role of certain nutrients known to facilitate neurodevelopment should be considered. One possible contributing factor could be attributed to deficits in choline intake, particularly during key stages of neurodevelopment, which includes the first 1000 days of life and childhood. Choline, a key micronutrient, is crucial for optimal neurodevelopment and brain functioning of offspring. The present narrative review discusses the main research, describing the effect of choline in neurodevelopmental disorders, to better understand its role in the etiology and management of these disorders. In terms of findings, low choline intakes and reduced or altered choline status have been reported in relevant population subgroups: pregnancy (in utero), children with autism spectrum disorders, people with attention deficit hyperactivity disorder and those with dyslexia. In conclusion, an optimal choline provision may offer some neuronal protection in early life and help to mitigate some cognitive effects in later life attributed to neurodevelopmental conditions. Research indicates that choline may act as a modifiable risk factor for certain neurodevelopmental conditions. Ongoing research is needed to unravel the mechanisms and explanations.

摘要

根据最近的全球疾病负担研究,神经发育障碍的发病率似乎呈上升趋势。这种上升可能是多因素的,但已知有助于神经发育的某些营养素的作用应该被考虑。一个可能的促成因素可以归因于胆碱摄入不足,特别是在神经发育的关键阶段,包括生命的前 1000 天和儿童时期。胆碱是一种关键的微量营养素,对后代的最佳神经发育和大脑功能至关重要。本叙述性评论讨论了主要的研究,描述了胆碱在神经发育障碍中的作用,以更好地理解其在这些障碍的病因和管理中的作用。就研究结果而言,在相关人群亚组中报告了低胆碱摄入量和减少或改变的胆碱状态:妊娠(宫内)、自闭症谱系障碍儿童、注意力缺陷多动障碍患者和诵读困难患者。总之,在生命早期提供最佳的胆碱供应可能会提供一些神经元保护,并有助于减轻因神经发育状况而导致的晚年某些认知影响。研究表明,胆碱可能是某些神经发育状况的可改变的风险因素。需要进行持续的研究以揭示机制和解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d75/10343507/99d6300c6366/nutrients-15-02876-g001.jpg

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