联盟简介:甲基化、成像和神经发育(MIND)联盟

IF 10.1 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Isabel K. Schuurmans, Rosa H. Mulder, Vilte Baltramonaityte, Alexandra Lahtinen, Fan Qiuyu, Leonardo Melo Rothmann, Marlene Staginnus, Jetro J. Tuulari, S. Alexandra Burt, Claudia Buss, Jeffrey M. Craig, Kirsten A. Donald, Johan G. Eriksson, Janine F. Felix, Tom P. Freeman, Rodrigo Grassi-Oliveira, Anke Huels, Luke W. Hyde, Scott A. Jones, Hasse Karlsson, Linnea Karlsson, Nastassja Koen, Will Lawn, Colter Mitchell, Christopher S. Monk, Michael A. Mooney, Ryan Muetzel, Joel T. Nigg, Síntia Iole Nogueira Belangero, Daniel Notterman, Yi Ying Ong, Tom O’Connor, Kieran J. O’Donnell, Pedro Mario Pan, Tiina Paunio, Peter Ryabinin, Richard Saffery, Giovanni A. Salum, Marc Seal, Tim J. Silk, Dan J. Stein, Ai Peng Tan, Ai Ling Teh, Dennis Wang, Heather Zar, Esther Walton, Charlotte A. M. Cecil
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引用次数: 0

摘要

表观遗传过程,如DNA甲基化,在预测心理健康和其他基于大脑的表型中显示出作为生物标记和基因-环境相互作用机制的潜力。然而,人们对外周表观遗传模式与大脑本身的个体差异之间的关系知之甚少。一种日益流行的解决方法是结合表观遗传学和神经影像学数据;然而,这一领域的研究几乎完全是由成年人的横断面研究组成的。为了弥补这一差距,我们建立了甲基化,成像和神经发育(MIND)联盟,旨在通过以下方式将发展焦点引入新兴的神经成像表观遗传学领域:(i)通过多队列分析促进协作,充分支持发展研究;(ii)通过建立共享管道和开放科学实践来提高科学严谨性;(iii)通过利用前瞻性、纵向儿科研究的数据,推进我们对不同发育时期(从出生到成年初期)DNA甲基化-大脑动力学的理解。MIND目前整合了全球16个队列,包括(重复)外周组织(血液、口腔细胞和唾液)中的DNA甲基化测量和长达21年的五个时间点的磁共振成像神经成像(Npooled DNAm = 12,877; Npooled神经成像= 10,899;Npooled联合= 6074)。通过对多个发育时间点和研究类型之间的关联进行三角测量,我们希望对外周DNA甲基化与大脑之间的动态关系以及这些关系最终如何与神经发育和精神表型相关产生新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Consortium profile: the methylation, imaging and NeuroDevelopment (MIND) consortium

Consortium profile: the methylation, imaging and NeuroDevelopment (MIND) consortium

Epigenetic processes, such as DNA methylation, show potential as biological markers and mechanisms underlying gene-environment interplay in the prediction of mental health and other brain-based phenotypes. However, little is known about how peripheral epigenetic patterns relate to individual differences in the brain itself. An increasingly popular approach to address this is by combining epigenetic and neuroimaging data; yet, research in this area is almost entirely comprised of cross-sectional studies in adults. To bridge this gap, we established the Methylation, Imaging and NeuroDevelopment (MIND) Consortium, which aims to bring a developmental focus to the emerging field of Neuroimaging Epigenetics by (i) promoting collaborative, adequately powered developmental research via multi-cohort analyses; (ii) increasing scientific rigor through the establishment of shared pipelines and open science practices; and (iii) advancing our understanding of DNA methylation-brain dynamics at different developmental periods (from birth to emerging adulthood), by leveraging data from prospective, longitudinal pediatric studies. MIND currently integrates 16 cohorts worldwide, comprising (repeated) measures of DNA methylation in peripheral tissues (blood, buccal cells, and saliva) and neuroimaging by magnetic resonance imaging across up to five time points over a period of up to 21 years (Npooled DNAm = 12,877; Npooled neuroimaging = 10,899; Npooled combined = 6074). By triangulating associations across multiple developmental time points and study types, we hope to generate new insights into the dynamic relationships between peripheral DNA methylation and the brain, and how these ultimately relate to neurodevelopmental and psychiatric phenotypes.

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来源期刊
Molecular Psychiatry
Molecular Psychiatry 医学-精神病学
CiteScore
20.50
自引率
4.50%
发文量
459
审稿时长
4-8 weeks
期刊介绍: Molecular Psychiatry focuses on publishing research that aims to uncover the biological mechanisms behind psychiatric disorders and their treatment. The journal emphasizes studies that bridge pre-clinical and clinical research, covering cellular, molecular, integrative, clinical, imaging, and psychopharmacology levels.
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