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首页> 外文期刊>The Journal of Experimental Biology >Region-specific changes in Mus musculus brain size and cell composition under chronic nutrient restriction
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Region-specific changes in Mus musculus brain size and cell composition under chronic nutrient restriction

机译:慢性营养限制下的Mus Musculus脑大小和细胞组成的区域特异性变化

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摘要

Nutrition is one of the most influential environmental factors affecting the development of different tissues and organs. It is suggested that under nutrient restriction the growth of the brain is spared as a result of the differential allocation of resources from other organs. However, it is not clear whether this sparing occurs brain-wide. Here, we analyzed morphological changes and cell composition in different regions of the offspring mouse brain after maternal exposure to nutrient restriction during pregnancy and lactation. Using high-resolution magnetic resonance imaging, we found that brain regions were differentially sensitive to maternal protein restriction and exhibited particular patterns of volume reduction. The cerebellum was reduced in absolute and relative volume, while cortex volume was relatively preserved. Alterations in cell composition (examined by the isotropic fractionator method) and organization of white matter (measured by diffusor tensor images) were also region specific. These changes were not related to the metabolic rate of the regions and were only partially explained by their specific growth trajectories. This study is a first step towards understanding the mechanisms of regional brain sparing at microstructural and macrostructural levels resulting from undernutrition.
机译:营养是影响不同组织和器官发展的最有影响力的环境因素之一。建议在营养限制下,由于来自其他器官的资源的差异分配,大脑的生长是备受的。但是,目前尚不清楚这种备用是否发生脑宽。在此,我们在孕产妇暴露于妊娠和哺乳期间在后代小鼠脑中不同地区的形态变化和细胞组成。使用高分辨率磁共振成像,我们发现脑区对母体蛋白质限制差异敏感,并且表现出特定的体积减少模式。绝对和相对体积减少了小脑细胞,而皮质体积相对保存。细胞组合物(通过各向同性分馏器方法检查)的改变和白物的组织(通过扩散器张量图像测量)也是特异性的。这些变化与地区的代谢率无关,并且仅被其特定的生长轨迹部分解释。本研究是了解欠营养不良造成的微观结构和宏观结构水平的区域脑滥本机制的第一步。

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