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A Mouse Model for Studying Nutritional Programming: Effects of Early Life Exposure to Soy Isoflavones on Bone and Reproductive Health

机译:研究营养程序的小鼠模型:大豆异黄酮的早期生命暴露对骨骼和生殖健康的影响

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Over the past decade, our research group has characterized and used a mouse model to demonstrate that “nutritional programming” of bone development occurs when mice receive soy isoflavones (ISO) during the first days of life. Nutritional programming of bone development can be defined as the ability for diet during early life to set a trajectory for better or compromised bone health at adulthood. We have shown that CD-1 mice exposed to soy ISO during early neonatal life have higher bone mineral density (BMD) and greater trabecular inter-connectivity in long bones and lumbar spine at young adulthood. These skeletal sites also withstand greater forces before fracture. Because the chemical structure of ISO resembles that of 17-β-estradiol and can bind to estrogen receptors in reproductive tissues, it was prudent to expand analyses to include measures of reproductive health. This review highlights aspects of our studies in CD-1 mice to understand the early life programming effects of soy ISO on bone and reproductive health. Preclinical mouse models can provide useful data to help develop and guide the design of studies in human cohorts, which may, depending on findings and considerations of safety, lead to dietary interventions that optimize bone health.
机译:在过去的十年中,我们的研究小组对小鼠模型进行了特征描述并使用它来证明,当小鼠在生命的第一天接受大豆异黄酮(ISO)时,就会发生骨骼发育的“营养程序”。骨骼发育的营养程序可以定义为生命早期饮食设定轨迹以改善成年后骨骼健康的能力。我们已经表明,在新生儿生命早期暴露于大豆ISO的CD-1小鼠在成年后的长骨和腰椎中具有较高的骨矿物质密度(BMD)和较大的小梁互连性。这些骨骼部位在骨折前也承受更大的力。由于ISO的化学结构类似于17-β-雌二醇,并且可以与生殖组织中的雌激素受体结合,因此谨慎地进行分析以包括生殖健康措施。这篇综述重点介绍了我们在CD-1小鼠中进行的研究,以了解大豆ISO对骨骼和生殖健康的早期编程影响。临床前小鼠模型可以提供有用的数据,以帮助开发和指导人类队列研究的设计,这可能取决于对安全性的发现和考虑,从而通过饮食干预来优化骨骼健康。

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