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首页> 外文期刊>Experimental Neurology >Excess glutamate secreted from astrocytes drives upregulation of P-glycoprotein in endothelial cells in amyotrophic lateral sclerosis
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Excess glutamate secreted from astrocytes drives upregulation of P-glycoprotein in endothelial cells in amyotrophic lateral sclerosis

机译:从星形胶质细胞分泌的过量的谷氨酸盐驱动肌萎缩侧硬化的内皮细胞中p-糖蛋白的上调

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In amyotrophic lateral sclerosis (ALS), upregulation in expression and activity of the ABC transporter P-glycoprotein (P-gp) driven by disease advancement progressively reduces CNS penetration and efficacy of the ALS drug, riluzole. Post-mortem spinal cord tissues from ALS patients revealed elevated P-gp expression levels in endothelial cells of the blood-spinal cord barrier compared to levels measured in control, non-diseased individuals. We recently found that astrocytes expressing familial ALS-linked SOD1 mutations regulate expression levels of P-gp in endothelial cells, which also exhibit a concomitant, significant increase in reactive oxygen species production and NF kappa B nuclear translocation when exposed to mutant SOD1 astrocyte conditioned media. In this study, we found that glutamate, which is abnormally secreted by mutant SOD1 and sporadic ALS astrocytes, drives upregulation of P-gp expression and activity levels in endothelial cells via activation of N-Methyl-D-Aspartic acid (NMDA) receptors. Surprisingly, astrocyte-secreted glutamate regulation of endothelial P-gp levels is not a mechanism shared by all forms of ALS. C9orf72-ALS astrocytes had no effect on endothelial cell P-gp expression and did not display increased glutamate secretion. Utilizing an optimized in vitro human BBB model consisting of patient-derived induced pluripotent stem cells, we showed that co-culture of endothelial cells with patient-derived astrocytes increased P-gp expression levels and transport activity, which was significantly reduced when endothelial cells were incubated with the NMDAR antagonist, MK801. Overall, our findings unraveled a complex molecular interplay between astrocytes of different ALS genotypes and endothelial cells potentially occurring in disease that could differentially impact ALS prognosis and efficacy of pharmacotherapies.
机译:在肌营养的外侧硬化症(ALS)中,通过疾病进展驱动的ABC转运蛋白P-糖蛋白(P-GP)的表达和活性的上调逐渐降低了ALS药物的CNS渗透和功效riiluzole。来自ALS患者的验尸脊髓组织显示出血脊髓屏障内皮细胞的升高,与对照,非患有个体测量的水平相比,血脊髓屏障的内皮细胞。我们最近发现表达家族性Als-Latched SOD1突变的星形胶质细胞调节内皮细胞中P-GP的表达水平,其在暴露于突变体SOD1星形胶质细胞条件培养基时,还表现出活性氧物种生产和NFκB核易位的伴随,显着增加。在本研究中,我们发现谷氨酸异常被突变体SOD1和散发性ALS星形胶质细胞分泌的谷氨酸,通过N-甲基-D-天冬氨酸(NMDA)受体的活化来驱动内皮细胞中的P-GP表达和活性水平的上调。令人惊讶的是,星形细胞分泌的内皮P-GP水平的谷氨酸调节不是由所有形式的ALS共享的机制。 C9ORF72-ALS星形胶质细胞对内皮细胞P-GP表达没有影响,并且没有显示出增加的谷氨酸分泌。利用由患者衍生的诱导多能干细胞组成的优化体外人BBB模型,我们表明,当内皮细胞均显着降低的P-GP表达水平和运输活性增加了内皮细胞的共培养。与NMDAR拮抗剂,MK801孵育。总体而言,我们的研究结果解开了不同ALS基因型和内皮细胞的星形胶质细胞之间的复杂分子相互作用,内皮细胞可能发生在疾病中可能差异地影响ALS预后和药物治疗的疗效。

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