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Developmental Programming of Fetal Skeletal Muscle and Adipose Tissue Development

机译:胎儿骨骼肌发育规划及脂肪组织发育

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摘要

All important developmental milestones are accomplished during the fetal stage, and nutrient fluctuation during this stage produces lasting effects on offspring health, so called fetal programming or developmental programming. The fetal stage is critical for skeletal muscle development, as well as adipose and connective tissue development. Maternal under-nutrition at this stage affects the proliferation of myogenic precursor cells and reduces the number of muscle fibers formed. Maternal over-nutrition results in impaired myogenesis and elevated adipogenesis. Because myocytes, adipocytes and fibrocytes are all derived from mesenchymal stem cells, molecular events which regulate the commitment of stem cells to different lineages directly impact fetal muscle and adipose tissue development. Recent studies indicate that microRNA is intensively involved in myogenic and adipogenic differentiation from mesenchymal stem cells, and epigenetic changes such as DNA methylation are expected to alter cell lineage commitment during fetal muscle and adipose tissue development.
机译:所有重要的发展里程碑都是在胎儿阶段完成的,而在这一阶段的养分波动会对子代健康产生持久影响,即所谓的胎儿编程或发育编程。胎儿阶段对于骨骼肌的发育以及脂肪和结缔组织的发育至关重要。在此阶段,孕妇营养不足会影响成肌前体细胞的增殖,并减少形成的肌纤维数量。孕产妇营养过度会导致肌生成受损和脂肪生成增加。由于肌细胞,脂肪细胞和纤维细胞均来源于间充质干细胞,因此调节干细胞对不同谱系的定向的分子事件直接影响胎儿的肌肉和脂肪组织的发育。最近的研究表明,microRNA与间充质干细胞的成肌和成脂分化密切相关,而表观遗传学变化(如DNA甲基化)有望改变胎儿肌肉和脂肪组织发育过程中的细胞谱系分布。

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