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Developmental Programming of Obesity and Diabetes in Mouse Monkey and Man in 2018: Where Are We Headed?

机译:2018年小鼠猴子和人中肥胖和糖尿病的发展规划:我们要去哪里?

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摘要

Childhood obesity and its comorbidities continue to accelerate across the globe. Two-thirds of pregnant women are obese/overweight, as are 20% of preschoolers. Gestational diabetes mellitus (GDM) is escalating, affecting up to 1 in 5 pregnant women. The field of developmental origins of health and disease has begun to move beyond associations to potential causal mechanisms for developmental programming. Evidence across species compellingly demonstrates that maternal obesity, diabetes, and Western-style diets create a long-lasting signature on multiple systems, including infant stem cells, the early immune system, and gut microbiota. Such exposures accelerate adipogenesis, disrupt mitochondrial metabolism, and impair energy sensing, affecting neurodevelopment, liver, pancreas, and skeletal muscle. Attempts to prevent developmental programming have met with very limited success. A challenging level of complexity is involved in how the host genome, metabolome, and microbiome throughout pregnancy and lactation increase the offspring’s risk of metabolic diseases across the life span. Considerable gaps in knowledge include the timing of exposure(s) and permanence or plasticity of the response, encompassing effects from both maternal and paternal dysmetabolism. Basic, translational, and human intervention studies targeting pathways that connect diet, microbiota, and metabolism in mothers with obesity/GDM and their infants are a critical unmet need and present new challenges for disease prevention in the next generation.
机译:儿童肥胖及其合并症在全球范围内继续加速发展。三分之二的孕妇肥胖/超重,学龄前儿童的肥胖率为20%。妊娠期糖尿病(GDM)不断升级,影响到五分之一的孕妇。健康和疾病的发展起源领域已开始从协会转移到发展计划的潜在因果机制。跨物种的证据令人信服地表明,母体肥胖,糖尿病和西式饮食在多种系统(包括婴儿干细胞,早期免疫系统和肠道菌群)上产生了持久的印记。此类暴露会加速脂肪生成,破坏线粒体代谢并削弱能量感应,从而影响神经发育,肝脏,胰腺和骨骼肌。阻止开发性编程的尝试取得了非常有限的成功。具有挑战性的复杂性涉及整个妊娠和哺乳期宿主基因组,代谢组和微生物组如何增加后代在整个生命周期中发生代谢疾病的风险。知识上的巨大空白包括接触时间,反应的持久性或可塑性,包括母体和父体代谢异常的影响。针对肥胖/ GDM母亲及其婴儿的饮食,微生物群和新陈代谢相关途径的基础,转化和人为干预研究是关键性的未满足需求,并且对下一代疾病预防提出了新的挑战。

著录项

  • 期刊名称 Diabetes
  • 作者

    Jacob E. Friedman;

  • 作者单位
  • 年(卷),期 2018(67),11
  • 年度 2018
  • 页码 2137–2151
  • 总页数 15
  • 原文格式 PDF
  • 正文语种
  • 中图分类 基础医学;
  • 关键词

  • 入库时间 2022-08-21 10:52:16

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