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SVCT2 vitamin C transporter expression in progenitor cells of the postnatal neurogenic niche

机译:SVCT2维生素C转运蛋白在产后神经源性小生境祖细胞中的表达

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摘要

Known as a critical antioxidant, recent studies suggest that vitamin C plays an important role in stem cell generation, proliferation and differentiation. Vitamin C also enhances neural differentiation during cerebral development, a function that has not been studied in brain precursor cells. We observed that the rat neurogenic niche is structurally organized at day 15 of postnatal development, and proliferation and neural differentiation increase at day 21. In the human brain, a similar subventricular niche was observed at 1-month of postnatal development. Using immunohistochemistry, sodium-vitamin C cotransporter 2 (SVCT2) expression was detected in the subventricular zone (SVZ) and rostral migratory stream (RMS). Low co-distribution of SVCT2 and βIII-tubulin in neuroblasts or type-A cells was detected, and minimal co-localization of SVCT2 and GFAP in type-B or precursor cells was observed. Similar results were obtained in the human neurogenic niche. However, BrdU-positive cells also expressed SVCT2, suggesting a role of vitamin C in neural progenitor proliferation. Primary neurospheres prepared from rat brain and the P19 teratocarcinoma cell line, which forms neurospheres in vitro, were used to analyze the effect of vitamin C in neural stem cells. Both cell types expressed functional SVCT2 in vitro, and ascorbic acid (AA) induced their neural differentiation, increased βIII-tubulin and SVCT2 expression, and amplified vitamin C uptake.
机译:作为一种重要的抗氧化剂,最近的研究表明维生素C在干细胞的产生,增殖和分化中起着重要的作用。维生素C还可以增强大脑发育过程中的神经分化,这一功能尚未在大脑前体细胞中进行研究。我们观察到大鼠神经源性利基在产后发育的第15天结构化,并且增殖和神经分化在第21天增加。在人脑中,在出生后1个月观察到类似的脑室下生利基。使用免疫组织化学,检测到维生素C转运蛋白2(SVCT2)的表达在脑室下区(SVZ)和眼部迁徙流(RMS)中。 SVCT2和βIII-微管蛋白在成神经细胞或A型细胞中的低共分布被检测到,并且在B型或前体细胞中SVCT2和GFAP的共定位最小。在人类神经源性利基市场上获得了相似的结果。然而,BrdU阳性细胞也表达SVCT2,表明维生素C在神经祖细胞增殖中的作用。用大鼠脑和在体外形成神经球的P19畸胎瘤细胞系制备的初级神经球用于分析维生素C在神经干细胞中的作用。两种细胞类型均在体外表达功能性SVCT2,抗坏血酸(AA)诱导其神经分化,增加βIII-微管蛋白和SVCT2的表达,并增加维生素C的吸收。

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