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From Mice to Men: research models of developmental programming

机译:从小鼠到男人:发展规划研究模型

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摘要

Developmental programming can be defined as a response to a specific challenge to the mammalian organism during a critical developmental time window that alters the trajectory of development with persistent effects on offspring phenotype and predisposition to future illness. We focus on the need for studies in relevant, well-characterized animal models in the context of recent research discoveries on the challenges, mechanisms and outcomes of developmental programming. We discuss commonalities and differences in general principles of developmental programming as they apply to several species, including humans. The consequences of these differences are discussed. Obesity, metabolic disorders and cardiovascular diseases are associated with the highest percentage of morbidity and mortality worldwide. Although many of the causes are associated with lifestyle, high-energy diets and lack of physical activity, recent evidence has linked developmental programming to the epidemic of metabolic diseases. A better understanding of comparative systems physiology of mother, fetus and neonate using information provided by rapid advances in molecular biology has the potential to improve the lifetime health of future generations by providing better women’s health, diagnostic tools and preventative and therapeutic interventions in individuals exposed during their development to programming influences.
机译:发育程序可以定义为在关键的发育时间窗口期间对哺乳动物生物体的特定挑战的反应,该时间窗口改变了发育轨迹,并对后代表型和未来疾病的易感性产生持续影响。在开发计划的挑战,机制和结果的最新研究发现的背景下,我们着重于在相关的,特征明确的动物模型中进行研究的需求。我们讨论了发展性编程的一般原理的共性和差异,因为它们适用于包括人类在内的多个物种。讨论了这些差异的后果。肥胖,代谢紊乱和心血管疾病与全世界最高的发病率和死亡率百分比有关。尽管许多原因与生活方式,高能量饮食和缺乏体育活动有关,但最近的证据已将发展计划与代谢性疾病的流行联系在一起。利用分子生物学快速发展所提供的信息,对母亲,胎儿和新生儿的比较系统生理学有更好的了解,这可能会通过在暴露期间暴露的个体中提供更好的妇女健康,诊断工具以及预防性和治疗性干预措施,来改善子孙后代的一生。他们的发展对编程的影响。

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