幼儿期端粒长度及其与注意力的关系:对 4-6 岁儿童的研究

Hanne Croons, D. Martens, Charlotte Vanderstukken, H. Sleurs, Leen Rasking, M. Peusens, Eleni Renaers, M. Plusquin, T. Nawrot
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引用次数: 0

摘要

端粒长度(TL)是细胞老化的一个标志,成人的端粒长度与认知功能的关系已被研究过。然而,人们对端粒长度与儿童认知发展之间的关系知之甚少。这项研究调查了出生队列中 283 名年龄在 4-6 岁之间的比利时儿童的白细胞长度与认知功能之间的相互作用。采用 qPCR 测量儿童白细胞 TL,而认知功能(包括注意力和记忆力)则采用剑桥神经心理测试自动化电池(CANTAB)进行评估。在对潜在混杂因素进行调整后,我们采用线性回归模型来检验 TL 与认知结果之间的关系。我们发现端粒长度与运动筛查任务中出现的空间错误之间存在反比关系(p = 0.017),这表明端粒较长的儿童运动准确性更高。端粒长度与其他认知结果之间没有发现明显的关联。我们的研究结果表明,端粒寿命与运动准确性之间存在特定联系,但与其他认知领域无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Telomere length in early childhood and its association with attention: a study in 4–6 year old children
Telomere length (TL), a marker of cellular aging, has been studied in adults with regard to its connection to cognitive function. However, little is known about the association between TL and cognitive development in children. This study investigated the interplay between TL and cognitive functioning in 283 Belgian children aged four to six years of the Environmental Influence on Aging in Early Life (ENVIRONAGE) birth cohort. Child leukocyte TL was measured using qPCR, while cognitive functioning, including attention and memory, was assessed using the Cambridge Neuropsychological Test Automated Battery (CANTAB). Linear regression models were employed to examine the association between TL and cognitive outcomes, adjusting for potential confounders. We found an inverse association between TL and the spatial errors made during the Motor Screening task (p = 0.017), indicating a higher motor accuracy in children with longer telomeres. No significant associations were found between TL and other cognitive outcomes. Our results suggest a specific link between TL and motor accuracy but not with the other cognitive domains.
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