首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Iron uptake in blood-brain barrier endothelial cells cultured in iron-depleted and iron-enriched media.
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Iron uptake in blood-brain barrier endothelial cells cultured in iron-depleted and iron-enriched media.

机译:在贫铁和富铁培养基中培养的血脑屏障内皮细胞中的铁摄取。

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摘要

Iron is essential in the cellular metabolism of all mammalian tissues, including the brain. Intracerebral iron concentrations vary with age and in several (neurological) diseases. Although it is evident that endothelial cells lining the capillaries in the brain are of importance, factors governing the regulation of intracerebral iron concentration are unknown. To investigate the role of blood-brain barrier endothelial cells in cerebral iron regulation, primary cultures of porcine blood-brain barrier endothelial cells were grown in either iron-enriched or iron-depleted medium. Iron-enriched cells showed a reduction in surface-bound and total transferrin receptor numbers compared with iron-depleted cells. Transferrin receptor kinetics showed that the transferrin receptor internalization rate in iron-enriched cultures was higher, whereas the transferrin receptor externalization rate in iron-enriched cultures was lower than the rate in iron-depleted cultures. Moreover, blood-brain barrier endothelial cells cultured in iron-enriched medium were able to accumulate more iron intracellularly, which underlines our kinetic data on transferrin receptors. Our results agree with histopathological studies on brain tissue of patients with hemochromatosis, suggesting that at high peripheral iron concentrations, the rate of iron transport across the blood-brain barrier endothelial cells is to some extent proportional to the peripheral iron concentration.
机译:铁在包括大脑在内的所有哺乳动物组织的细胞代谢中都是必不可少的。脑内铁的浓度随年龄和几种(神经性)疾病而变化。尽管显然在脑内的毛细血管内层的内皮细胞很重要,但控制脑内铁浓度调节的因素尚不清楚。为了研究血脑屏障内皮细胞在调节脑铁中的作用,在富铁或贫铁培养基中培养猪血脑屏障内皮细胞的原代培养物。与贫铁细胞相比,富铁细胞的表面结合和总转铁蛋白受体数量减少。转铁蛋白受体动力学表明,富铁培养物中转铁蛋白受体的内在化速率较高,而富铁培养物中转铁蛋白受体的内在化速率低于贫铁培养物。此外,在富含铁的培养基中培养的血脑屏障内皮细胞能够在细胞内积累更多的铁,这突显了我们有关运铁蛋白受体的动力学数据。我们的结果与血色素沉着病患者脑组织的组织病理学研究相吻合,表明在高外周血铁浓度下,穿过血脑屏障内皮细胞的铁运输速率在一定程度上与外周血铁浓度成正比。

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