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 >GAT3 selective substrate l-isoserine upregulates GAT3 expression and increases functional recovery after a focal ischemic stroke in mice
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GAT3 selective substrate l-isoserine upregulates GAT3 expression and increases functional recovery after a focal ischemic stroke in mice

机译:GAT3选择性底物L-肌丝氨酸上调GAT3表达,并在小鼠局灶性缺血性卒中后增加功能恢复

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摘要

Ischemic stroke triggers an elevation in tonic GABA inhibition that impairs the ability of the brain to form new structural and functional cortical circuits required for recovery. This stroke-induced increase in tonic inhibition is caused by impaired GABA uptake via the glial GABA transporter GAT3, highlighting GAT3 as a novel target in stroke recovery. Using a photothrombotic stroke mouse model, we show that GAT3 protein levels are decreased in peri-infarct tissue from 6 h to 42 days post-stroke. Prior studies have shown that GAT substrates can increase GAT surface expression. Therefore, we aimed to assess whether the GAT3 substrate, L-isoserine, could increase post-stroke functional recovery. L-Isoserine (38 mu M or 380 mu M) administered directly into the infarct from day 5 to 32 post-stroke, significantly increased motor performance in the grid-walking and cylinder tasks in a concentration-dependent manner, without affecting infarct volumes. Additionally, L-isoserine induced a lasting increase in GAT3 expression in peri-infarct regions accompanied by a small decrease in GFAP expression. This study is the first to show that a GAT3 substrate can increase GAT3 expression and functional recovery after focal ischemic stroke following a delayed long-term treatment. We propose that enhancing GAT3-mediated uptake dampens tonic inhibition and promotes functional recovery after stroke.
机译:缺血性卒中触发了滋补GABA抑制中的升高,损害了大脑形成恢复所需的新型结构和功能皮质电路的能力。这种中风诱导的滋补抑制的增加是由于GABA通过胶质GABA转运蛋白GAT3受损,突出了GAT3作为中风恢复的新靶标。使用PhetCothromic Stroke小鼠模型,我们表明,在中风后6小时至42天,PER-Infarct组织中GAT3蛋白水平降低。先前的研究表明,GAT基材可以增加GAT表面表达。因此,我们旨在评估GAT3底物L-肌鼠,可以增加中风后功能恢复。 L-肌静脉(38μm或380 mu m)直接施用到行程后的第5天至32日梗塞中,以浓度依赖的方式显着提高了电网行走和气缸任务中的电动机性能,而不会影响梗塞体积。另外,L- isOSerine在Peri-Imarct地区诱导GAT3表达的持续增加,伴随着GFAP表达的小降低。本研究首先表明GAT3底物可以在延迟长期治疗后局灶性缺血性脑卒中后增加GAT3表达和功能恢复。我们提出增强GAT3介导的摄取抑制补品抑制并促进中风后的功能恢复。

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