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第八届美国发育起源健康与疾病会议:早期生活暴露表观遗传学研究的前景方法

The eighth annual US DOHAD meeting: promising approaches in epigenetics research of early life exposures.

作者信息

Non Amy L

机构信息

Department of Anthropology, University of California San Diego, La Jolla, CA, USA.

出版信息

Epigenomics. 2025 Mar;17(4):209-211. doi: 10.1080/17501911.2025.2459550. Epub 2025 Jan 28.

Abstract

The U.S. Developmental Origins of Health and Disease (DOHaD) meeting is an annual conference of primarily U.S. scientists who study early life programming of health and disease. The eighth annual symposium, entitled "Exploring Translational DOHaD Science: From Cells to Communities" was held at the Rizzo Conference Center in Chapel Hill, North Carolina, from October 14 to 16, 2024. The meeting was organized by US-DOHaD President Danielle Christifano and Vice President Kaela Varberg, and other Society Council Members. This year's meeting had record attendance, with 158 attendees from diverse disciplines, and featured 10 keynote speakers, 11 platform talks, and 84 poster presentations. Four major topics were covered: 1) Early nutrition and developmental outcomes, 2) Prenatal origins of child health, 3) Developmental impacts of toxicant exposures, and 4) Metabolic origins of health. Overall, the presented research highlighted the value of studying epigenetic effects of dietary and toxic exposures early in life. Various strategies emerged to address challenges facing the field, such as harnessing the power of nationwide longitudinal birth cohorts, new methods to integrate epigenetic and environmental data across various levels, and the emerging potential of organoids to identify the causal impact of early life exposures.

摘要

美国健康与疾病的发育起源(DOHaD)会议是一场主要由美国科学家参加的年度会议,他们研究健康与疾病的早期生命编程。第八届年度研讨会,题为“探索转化性DOHaD科学:从细胞到社区”,于2024年10月14日至16日在北卡罗来纳州教堂山的里佐会议中心举行。该会议由美国DOHaD主席丹妮尔·克里斯蒂法诺和副主席凯拉·瓦尔贝格以及其他协会理事会成员组织。今年的会议出席人数创历史新高,有来自不同学科的158名与会者,并设有10位主旨演讲者、11场平台演讲和84场海报展示。会议涵盖了四个主要主题:1)早期营养与发育结果,2)儿童健康的产前起源,3)有毒物质暴露的发育影响,4)健康的代谢起源。总体而言,所展示的研究突出了在生命早期研究饮食和有毒物质暴露的表观遗传效应的价值。出现了各种策略来应对该领域面临的挑战,例如利用全国性纵向出生队列的力量、整合不同层面表观遗传和环境数据的新方法,以及类器官在确定早期生命暴露因果影响方面的新兴潜力。

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