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Child Health Developmental Plasticity and Epigenetic Programming

机译:儿童健康发育可塑性和表观遗传程序设计

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摘要

Plasticity in developmental programming has evolved in order to provide the best chances of survival and reproductive success to the organism under changing environments. Environmental conditions that are experienced in early life can profoundly influence human biology and long-term health. Developmental origins of health and disease and life-history transitions are purported to use placental, nutritional, and endocrine cues for setting long-term biological, mental, and behavioral strategies in response to local ecological and/or social conditions. The window of developmental plasticity extends from preconception to early childhood and involves epigenetic responses to environmental changes, which exert their effects during life-history phase transitions. These epigenetic responses influence development, cell- and tissue-specific gene expression, and sexual dimorphism, and, in exceptional cases, could be transmitted transgenerationally. Translational epigenetic research in child health is a reiterative process that ranges from research in the basic sciences, preclinical research, and pediatric clinical research. Identifying the epigenetic consequences of fetal programming creates potential applications in clinical practice: the development of epigenetic biomarkers for early diagnosis of disease, the ability to identify susceptible individuals at risk for adult diseases, and the development of novel preventive and curative measures that are based on diet and/or novel epigenetic drugs.
机译:为了在不断变化的环境中为有机体提供最佳生存和生殖成功的机会,发展性编程的可塑性已经发展。生命早期经历的环境条件会深刻影响人类生物学和长期健康。据称,健康和疾病的发展起源以及生活史的转变是利用胎盘,营养和内分泌线索来制定长期的生物学,心理和行为策略,以应对当地的生态和/或社会条件。发育可塑性的窗口从受孕前一直延伸到儿童早期,涉及对环境变化的表观遗传反应,这些变化在生命历史阶段的过渡中发挥作用。这些表观遗传反应影响发育,细胞和组织特异性基因表达以及性二态性,在特殊情况下,可以跨代传播。儿童健康的转化表观遗传学研究是一个反复的过程,其范围包括基础科学,临床前研究和儿科临床研究。识别胎儿编程的表观遗传学后果可在临床实践中潜在应用:开发用于疾病早期诊断的表观遗传生物标志物,鉴定具有成人疾病风险的易感人群的能力,以及开发基于以下内容的新型预防和治疗措施饮食和/或新型表观遗传药物。

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