Nutrition Innovation Centre for Food and Health (NICHE), School of Biomedical Sciences, Ulster University, Coleraine, UK.
British Columbia Children's Hospital Research Institute, Food Nutrition and Health Program, Faculty of Land and Food Systems, The University of British Columbia, Vancouver, British Columbia, Canada.
Nutr Bull. 2023 Jun;48(2):267-277. doi: 10.1111/nbu.12611. Epub 2023 Feb 21.
Suboptimal status of folate and/or interrelated B vitamins (B , B and riboflavin) can perturb one-carbon metabolism and adversely affect brain development in early life and brain function in later life. Human studies show that maternal folate status during pregnancy is associated with cognitive development in the child, whilst optimal B vitamin status may help to prevent cognitive dysfunction in later life. The biological mechanisms explaining these relationships are not clear but may involve folate-related DNA methylation of epigenetically controlled genes related to brain development and function. A better understanding of the mechanisms linking these B vitamins and the epigenome with brain health at critical stages of the lifecycle is necessary to support evidence-based health improvement strategies. The EpiBrain project, a transnational collaboration involving partners in the United Kingdom, Canada and Spain, is investigating the nutrition-epigenome-brain relationship, particularly focussing on folate-related epigenetic effects in relation to brain health outcomes. We are conducting new epigenetics analysis on bio-banked samples from existing well-characterised cohorts and randomised trials conducted in pregnancy and later life. Dietary, nutrient biomarker and epigenetic data will be linked with brain outcomes in children and older adults. In addition, we will investigate the nutrition-epigenome-brain relationship in B vitamin intervention trial participants using magnetoencephalography, a state-of-the-art neuroimaging modality to assess neuronal functioning. The project outcomes will provide an improved understanding of the role of folate and related B vitamins in brain health, and the epigenetic mechanisms involved. The results are expected to provide scientific substantiation to support nutritional strategies for better brain health across the lifecycle.
叶酸和/或相关 B 族维生素(B 、B 和核黄素)的状态不佳会扰乱一碳代谢,对生命早期的大脑发育和生命后期的大脑功能产生不利影响。人体研究表明,母亲在怀孕期间的叶酸状况与孩子的认知发育有关,而最佳的 B 族维生素状态可能有助于预防生命后期的认知功能障碍。解释这些关系的生物学机制尚不清楚,但可能涉及与大脑发育和功能相关的受表观遗传控制的基因的叶酸相关 DNA 甲基化。为了支持基于证据的健康改善策略,有必要更好地了解将这些 B 族维生素与表观基因组与大脑健康在生命周期的关键阶段联系起来的机制。EpiBrain 项目是一个跨国合作项目,涉及英国、加拿大和西班牙的合作伙伴,正在研究营养-表观基因组-大脑关系,特别是关注与大脑健康结果相关的叶酸相关表观遗传效应。我们正在对现有特征明确的队列和在妊娠和生命后期进行的随机试验中生物样本库的样本进行新的表观遗传学分析。饮食、营养生物标志物和表观遗传学数据将与儿童和老年人的大脑结果相关联。此外,我们将使用脑磁图(一种评估神经元功能的最先进的神经影像学方式)研究 B 族维生素干预试验参与者的营养-表观基因组-大脑关系。该项目的结果将提供对叶酸和相关 B 族维生素在大脑健康中的作用以及所涉及的表观遗传机制的更好理解。预计结果将为支持整个生命周期更好的大脑健康的营养策略提供科学依据。