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首页> 外文期刊>The Journal of Nutritional Biochemistry >Rat neural stem cell proliferation and differentiation are durably altered by the in utero polyunsaturated fatty acid supply.
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Rat neural stem cell proliferation and differentiation are durably altered by the in utero polyunsaturated fatty acid supply.

机译:子宫内多不饱和脂肪酸的供应持久地改变了大鼠神经干细胞的增殖和分化。

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We isolated neural stem cellseural progenitors (NSC) from 1-day-old rat pups born to mothers fed diets that were deficient or supplemented with n-3 polyunsaturated fatty acids (PUFAs) and compared their proliferation and differentiation in vitro. The cells isolated from the n-3PUFA-deficient pups consistently proliferated more slowly than cells that were isolated from n-3PUFA-supplemented pups, despite the fact that both were cultured under the same conditions. The differences in the proliferation rates were evaluated up until 40 days of culture and were highly significant. When the cells were allowed to differentiate, the deficient cells exhibited a higher degree of neuronal maturation in response to the addition of PUFAs in the medium, as demonstrated by an increase in neurite length, whereas the neurons derived from the supplemented pups showed no change. This result was consistent, regardless of the age of the culture. The properties of the NSC were durably modified throughout the length of the culture, although the membrane phospholipid compositions were similar. We examined the differential expression of selected mRNAs and micro RNAs. We found significant differences in the gene expression of proliferating and differentiating cells, and a group of genes involved in neurogenesis was specifically modified by n-3 PUFA treatment. We conclude that n-3 PUFA levels in the maternal diet can induce persistent modifications of the proliferation and differentiation of NSCs and of their transcriptome. Therefore, the n-3 supply received in utero may condition on a long-term basis cell renewal in the brain. All rights reserved, Elsevier.
机译:我们从1日龄大鼠幼崽中分离出神经干细胞/神经祖细胞(NSC),这些幼崽是由喂养不足或补充n-3多不饱和脂肪酸(PUFA)的母亲喂养的,并比较了它们的体外增殖和分化。从n-3PUFA缺乏的幼犬中分离出的细胞始终比从补充n-3PUFA的幼犬中分离出的细胞增殖更慢,尽管事实上它们都是在相同条件下培养的。评估直至培养40天的增殖率差异,并且差异非常显着。当允许细胞分化时,响应于培养基中PUFA的添加,缺陷细胞表现出更高程度的神经元成熟,如神经突长度的增加所证明,而源自补充幼犬的神经元则没有变化。无论文化的年龄如何,这一结果都是一致的。尽管膜磷脂成分相似,但在整个培养过程中NSC的特性均得到了持久的修饰。我们检查了选定的mRNA和微小RNA的差异表达。我们发现增殖和分化细胞的基因表达存在显着差异,并且通过n-3 PUFA处理专门修饰了一组参与神经发生的基因。我们得出的结论是,母体饮食中n-3 PUFA的水平可以诱导NSCs及其转录组的增殖和分化的持续改变。因此,宫内接受的n-3供应可能会长期影响大脑中的细胞更新。保留所有权利,Elsevier。

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