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Determining striatal extracellular glutamate levels in xCT mutant mice using LFPS CE-LIF

机译:使用LFPS CE-LIF测定xCT突变小鼠的纹状体细胞外谷氨酸水平

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Glutamate analysis is useful for the study of many neurochemical processes. In vivo sampling techniques and sample assays provide a platform for monitoring extracellular glutamate levels in the central nervous system of animal models. Low flow pusha€“pull perfusion sampling is used here to sample from the mouse striatum to understand basal extracellular glutamate levels. The 500 nL perfusate samples are pH adjusted with minimal dilution of 1.2 fold prior to derivatization for glutamate measurements. The method optimized for glutamate labelling and measurement involves the use of capillaries for addition of 100 nL solutions to samples. Quantitation of glutamate in the derivatized samples was accomplished with capillary electrophoresis-laser induced fluorescence. Glutamate and aspartate levels were monitored in C3H/HeSnJ controls and C3H/HeSnJ-Slc7a11sut mutants to understand cystine-glutamate transporter (xCT) function. The study of basal glutamate levels used 4 groups: males and females of both control and mutant mice (each N = 5). Using this approach, extracellular glutamate levels in mouse striatum were found to range between 2.68(?±0.51) ??M and 1.84(?±0.40) ??M. As expected, extracellular glutamate was lower in the striatum of sut mutant males. Control females, however, showed lower glutamate overall and no difference between genotypes. Overall, a method of LFPS collection and CE-LIF quantitation shows promise for study of glutamate in this model system.
机译:谷氨酸分析对于许多神经化学过程的研究是有用的。体内采样技术和样品测定为监测动物模型中枢神经系统中细胞外谷氨酸水平提供了平台。这里使用低流量推挽式灌注采样从小鼠纹状体采样以了解基础细胞外谷氨酸水平。将500 nL灌注液样品的pH值调节至最小1.2倍稀释,然后衍生化用于谷氨酸测量。优化的谷氨酸盐标记和测量方法涉及使用毛细管向样品中添加100 nL溶液。用毛细管电泳-激光诱导的荧光完成衍生样品中谷氨酸的定量。监测C3H / HeSnJ对照和C3H / HeSnJ-Slc7a11sut突变体中的谷氨酸和天冬氨酸水平,以了解胱氨酸-谷氨酸转运蛋白(xCT)的功能。基础谷氨酸水平的研究使用了4组:对照和突变小鼠的雄性和雌性(每组N = 5)。使用这种方法,发现小鼠纹状体中的细胞外谷氨酸水平在2.68(α±0.51)ΔM和1.84(α±0.40)ΔM之间。正如预期的那样,sut突变型雄性小鼠纹状体中的细胞外谷氨酸含量较低。然而,对照雌性的谷氨酸总体显示较低,并且基因型之间没有差异。总体而言,LFPS收集和CE-LIF定量的方法显示了在该模型系统中研究谷氨酸的前景。

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