首页> 外文OA文献 ><Poster>Cellular and subcellular localizations of nonheme ferric and ferrous iron in the rat brain : a light and electron microscopic study by the perfusion-Perls and -Turnbull methods
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<Poster>Cellular and subcellular localizations of nonheme ferric and ferrous iron in the rat brain : a light and electron microscopic study by the perfusion-Perls and -Turnbull methods

机译:<海报>大鼠脑中非血红素铁和亚铁的细胞和亚细胞定位:灌注-Perls和-Turnbull方法的光电子显微镜研究

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摘要

Iron is essential for a variety of cellular functions. However iron, especially ferrous form, has the potentialfor catalyzing the Fenton reaction to generate highly cytotoxic hydroxyl radicals. Therefore the amount of iron in thebrain is strictly controlled. In this study we focused on the cellular and subcellular localizations of nonheme ferric(Fe(III)) and ferrous (Fe(II)) iron in the adult female rat brain by light and electron microscopic histochemistry.Although Fe(II) deposition was much less dominant than Fe(III), the brain contained iron in both forms. Amongthe cellular elements of the brain, oligodendrocytes were numerically most prominent and heavily iron-storing cells.Pericapillary astrocytes and sporadic microglial cells also showed dense iron accumulation. Large neurons involvedin the motor system were relatively strongly iron-positive. Subcellularly, Fe(III) and Fe(II) were mainly localizedin lysosomes, and occasionally in the cytosol and mitochondria. Fe(II)-specific deposit was shown on the luminalmembrane of endothelium. With advancing age, both Fe(III) and Fe(II) became distributed more extensively, andaccumulated more numerously into oligodendrocytes.
机译:铁对于多种细胞功能至关重要。但是,铁,特别是亚铁形式,具有催化Fenton反应产生高度细胞毒性羟基自由基的潜力。因此,大脑中铁的含量受到严格控制。在本研究中,我们通过光镜和电子显微镜组织化学研究了成年雌性大鼠脑中非血红素铁(Fe(III))和亚铁(Fe(II))铁的细胞和亚细胞定位。大脑中的铁含量低于铁(III),两种形式都含有铁。在大脑的细胞成分中,少突胶质细胞是数量最多的且储铁量很高的细胞。乳头状星形胶质细胞和零星的小胶质细胞也显示出密集的铁积累。参与运动系统的大型神经元的铁阳性相对较强。在亚细胞中,Fe(III)和Fe(II)主要位于溶酶体中,偶而位于细胞质和线粒体中。 Fe(II)特异性沉积物显示在内皮的光膜上。随着年龄的增长,Fe(III)和Fe(II)分布更广泛,并在少突胶质细胞中大量积累。

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