首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Characterization of the L-glutamate clearance pathways across the blood–brain barrier and the effect of astrocytes in an in?vitro blood–brain barrier model
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Characterization of the L-glutamate clearance pathways across the blood–brain barrier and the effect of astrocytes in an in?vitro blood–brain barrier model

机译:血脑屏障血型脑屏障的L-谷氨酸间隙途径的表征及星形胶质细胞在β体外血脑屏障模型中的作用

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The aim was to characterize the clearance pathways for L-glutamate from the brain interstitial fluid across the blood–brain barrier using a primary in?vitro bovine endothelial/rat astrocyte co-culture. Transporter profiling was performed using uptake studies of radiolabeled L-glutamate with co-application of transporter inhibitors and competing amino acids. Endothelial abluminal L-glutamate uptake was almost abolished by co-application of an EAAT-1 specific inhibitor, whereas luminal uptake was inhibited by L-glutamate and L-aspartate (1?mM). L-glutamate uptake followed Michaelis–Menten-like kinetics with high and low affinity at the abluminal and luminal membrane, respectively. This indicated that L-glutamate is taken up via EAAT-1 at the abluminal membrane and exits at the luminal membrane via a low affinity glutamate/aspartate transporter. Metabolism of L-glutamate and transport of metabolites was examined using [U- 13 C] L-glutamate. Intact L-glutamate and metabolites derived from oxidative metabolism were transported through the endothelial cells. High amounts of L-glutamate-derived lactate in the luminal medium indicated cataplerosis via malic enzyme. Thus, L-glutamate can be transported intact from brain to blood via the concerted action of abluminal and luminal transport proteins, but the total brain clearance is highly dependent on metabolism in astrocytes and endothelial cells followed by transport of metabolites.
机译:目的是使用初级牛内皮/大鼠星形胶质细胞共培养来表征来自血脑屏障的脑间质液中的L-谷氨酸的清关途径。使用过度的标记的L-谷氨酸的摄取研究进行转运素分析,用转运蛋白抑制剂和竞争氨基酸的共同施用。通过对EAAT-1特异性抑制剂的共同施用几乎废除内皮αBluminalL-谷氨酸摄取,而L-谷氨酸和L-天冬氨酸(1μm)抑制腔压吸收。 L-谷氨酸摄取遵循Michaelis-Menten的动力学,分别在牙龈和腔膜处具有高和低亲和力。这表明L-谷氨酸通过在Abluminal膜处通过EAAT-1溶液,通过低亲和力谷氨酸/天冬氨酸转运物在腔膜处离开。使用[U-13 C] L-谷氨酸来检查L-谷氨酸的新代谢和代谢物的运输。完整的L-谷氨酸和衍生自氧化代谢的代谢物通过内皮细胞输送。腔介质中的大量L-谷氨酸衍生的乳酸乳酸乳酸通过苹果酶表明寄生虫剂。因此,L-谷氨酸通过Abluminal和腔动蛋白的齐节作用可以通过脑部到血液中的完整性,但总脑部间隙高度依赖于星形胶质细胞和内皮细胞中的代谢,然后进行代谢物。

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