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首页> 外文期刊>Theriogenology >Modelling the developmental origins of health and disease in the early embryo.
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Modelling the developmental origins of health and disease in the early embryo.

机译:在早期胚胎中模拟健康和疾病的发展起源。

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The concept that certain adult diseases, such as hypertension, type 2 diabetes and dyslipidaemia can originate from events occurring in utero arose from epidemiological studies in humans but has since been supported by numerous animal-based studies. Referred to as the "developmental origins of health and disease" or "DOHaD" hypothesis, nutritional studies to date have largely focused on two experimental paradigms involving either calorie or protein restriction for varying intervals during pregnancy, where the favoured animal models have been the sheep and rat. In recent times, attention has been directed towards the earliest stages of gestation, where there is emerging evidence to indicate that the pre-implantation embryo may be particularly sensitive to environmentally induced perturbations leading to impaired health in adulthood. In this article, we make the case for hESCs as a model of the human pre-implantation embryo. Working with comparatively large populations of embryonic cells from the species of clinical interest, the scope exists to investigate the effects of specific genetic manipulations or combinations of metabolites against contrasting genetic backgrounds, where the consequences can be evaluated in downstream tissue specific progenitor and/or terminally differentiated cells. In order to fully realize these potentials, however, both derivation and culture conditions need to be harmonized and refined so as to preclude the requirement for feeder cells and serum..
机译:某些成人疾病(例如高血压,2型糖尿病和血脂异常)的起源可能源于子宫内发生的事件,这一观念源于人类的流行病学研究,但此后得到了许多基于动物的研究的支持。迄今为止,营养研究被称为“健康与疾病的发展起源”或“ DOHaD”假说,主要集中在两个实验范式,涉及怀孕期间不同时间段的卡路里或蛋白质限制,其中最受宠的动物模型是绵羊和老鼠。近年来,注意力已集中在妊娠的早期阶段,那里有新的证据表明植入前的胚胎可能对环境引起的扰动特别敏感,从而导致成年后的健康受损。在本文中,我们将hESC作为人类植入前胚胎的模型。与来自临床上感兴趣的物种的较大数量的胚胎细胞一起工作,该范围的存在是为了研究特定遗传操作或代谢物组合在不同遗传背景下的影响,其后果可在下游组织特异性祖细胞和/或末端评估分化的细胞。但是,为了完全实现这些潜力,需要协调和完善衍生条件和培养条件,以排除对饲养细胞和血清的需求。

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