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首页> 外文期刊>Clinical Science >Up-regulation of brain-enriched miR-107 promotes excitatory neurotoxicity through down-regulation of glutamate transporter-1 expression following ischaemic stroke
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Up-regulation of brain-enriched miR-107 promotes excitatory neurotoxicity through down-regulation of glutamate transporter-1 expression following ischaemic stroke

机译:缺血性中风后,富含脑的miR-107的上调通过下调谷氨酸转运蛋白1的表达促进兴奋性神经毒性。

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摘要

Recent studies have uncovered that accumulation of glutamate after ischaemic stroke is closely associated with the down-regulation of glutamate transporter-1 (GLT-1) expression, suggesting that GLT-1 expression critically controls glutamate accumulation and the abnormal glutamate transport-elicited neuronal cell excitotoxicity in patients with ischaemic stroke. However, it remains unknown how GLT-1 expression is regulated under ischaemic stroke conditions. In the present study, we screened the expression of nine brain-specific or brain-enriched miRNAs in a focal cerebral ischaemia/reperfusion (I/R) injury rat model, which showed glutamate accumulation and down-regulated GLT-1 expression as expected, and revealed that the miR-107 level was elevated in both brain tissue and plasma in the model. Next, we examined the functional relationship of miR-107 with GLT-1 expression in a nerve cell hypoxia/reoxygenation (H/R) injury model. H/R treatment increased apoptosis of the nerve cells concomitant with glutamate accumulation, miR-107 elevation and suppressed GLT-1 expression, mimicking our in vivo findings in the cerebral I/R injury rat model in vitro. Co-treating the cells with an miR-107 inhibitor blocked all of the effects, demonstrating that miR-107 functions to inhibit GLT-1 expression and elevate glutamate accumulation. To extend these animal and cell-based studies to clinical patients, we measured the plasma levels of miR-107 and glutamate, and observed that both miR-107 and glutamate were elevated in patients with ischaemic stroke. On the basis of these observations, we conclude that elevated miR-107 expression after ischaemic stroke accounts, at least partially, for glutamate accumulation through suppression of GLT-1 expression. Our findings also highlight that the plasma level of miR-107 may serve as a novel biomarker for monitoring excitotoxicity in patients with ischaemic stroke.
机译:近期研究发现,缺血性中风后谷氨酸的积累与谷氨酸转运蛋白-1(GLT-1)表达的下调密切相关,这表明GLT-1表达可关键地控制谷氨酸积累和异常谷氨酸转运引起的神经元细胞。缺血性中风患者的兴奋性毒性。然而,尚不清楚在缺血性中风条件下如何调节GLT-1的表达。在本研究中,我们在局灶性脑缺血/再灌注(I / R)损伤大鼠模型中筛选了9种特定于大脑或富含脑的miRNA的表达,该模型显示谷氨酸的蓄积和GLT-1的表达如预期的那样下调,并显示该模型的脑组织和血浆中的miR-107水平均升高。接下来,我们检查了在神经细胞缺氧/复氧(H / R)损伤模型中miR-107与GLT-1表达的功能关系。 H / R处理可增加神经细胞的凋亡,伴随谷氨酸的积累,miR-107的升高和GLT-1表达的抑制,这与我们在脑I / R损伤大鼠模型中的体内发现相似。用miR-107抑制剂对细胞进行共处理可阻断所有作用,表明miR-107可以抑制GLT-1表达并提高谷氨酸的积累。为了将这些基于动物和细胞的研究扩展到临床患者,我们测量了miR-107和谷氨酸的血浆水平,并观察到缺血性卒中患者中miR-107和谷氨酸均升高。根据这些观察,我们得出结论,缺血性中风后miR-107表达的升高至少部分地通过抑制GLT-1表达来解释谷氨酸的积累。我们的研究结果还突出表明,miR-107的血浆水平可作为监测缺血性中风患者兴奋性毒性的新型生物标志物。

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