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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >In vitro MS-based proteomic analysis and absolute quantification of neuronal-glial injury biomarkers in cell culture system
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In vitro MS-based proteomic analysis and absolute quantification of neuronal-glial injury biomarkers in cell culture system

机译:基于体外质谱的蛋白质组学分析和细胞培养系统中神经胶质细胞损伤生物标志物的绝对定量

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MS-based proteomics has been the method of choice for biomarker discovery in the field of traumatic brain injury (TBI). Due to its high sensitivity and specificity, MS is now being explored for biomarker quantitative validation in tissue and biofluids. In this study, we demonstrate the use of MS in both qualitative protein identification and targeted detection of acute TBI biomarkers released from degenerating cultured rat cortical mixed neuronal cells, mimicking intracellular fluid in the central nervous system after TBI. Calpain activation was induced by cell treatment with maitotoxin (MTX), a known calcium channel opener. Separate plates of mixed neuronal-glial culture were subjected to excitotoxin N-methyl-D-aspartate (NMDA) and apoptotic inducer staurosporine. Acute TBI biomarkers, GFAP and UCH-L1, were first detected and assessed in the culture media by Western blot. The cell-conditioned media were then trypsinized and subjected to bottom up proteomic analysis. GFAP was readily detected by data-dependent scanning but not UCH-L1. As a proof-of-principle study, rat glia-enriched cell cultures treated with MTX were used to investigate the time-dependent release of GFAP breakdown product by Western blot and for isotope dilution MS absolute quantitation method development. Absolute quantitation of the GFAP release was conducted using the three cortical mixed neuronal cell cultures treated with different agents. Other differentially expressed proteins identified in the glial-enriched and cortical mixed neuronal cell culture models were further analyzed by bioinformatic tools. In summary, this study demonstrates the use of MS in both protein identification and targeted quantitation of acute TBI biomarkers and is the preliminary step toward development of TBI biomarker validation by targeted MS.
机译:基于MS的蛋白质组学已成为创伤性脑损伤(TBI)领域生物标志物发现的选择方法。由于其高灵敏度和特异性,目前正在探索MS在组织和生物流体中进行生物标志物定量验证的方法。在这项研究中,我们证明了MS在定性蛋白质鉴定和靶向检测中的应用,这些蛋白质从退化的培养的大鼠皮质混合神经元细胞中释放,模拟了TBI后中枢神经系统的细胞内液,从而释放了急性TBI生物标志物。通过用已知的钙通道开放剂麦毒素(MTX)进行细胞处理来诱导钙蛋白酶激活。混合神经胶质细胞培养的分离板分别接受N-甲基-D-天冬氨酸(NMDA)和细胞凋亡诱导剂星形孢菌素的兴奋性毒素处理。首先在培养基中通过Western blot检测并评估了急性TBI生物标志物GFAP和UCH-L1。然后将细胞条件培养基用胰蛋白酶消化,并进行自下而上的蛋白质组学分析。 GFAP很容易通过依赖数据的扫描来检测,但不能通过UCH-L1检测到。作为一项原理研究,使用MTX处理的​​大鼠胶质细胞富集的细胞培养物通过Western blot研究了GFAP分解产物的时间依赖性释放,并用于同位素稀释MS绝对定量方法的开发。 GFAP释放的绝对定量是使用三种经不同试剂处理的皮质混合神经元细胞培养物进行的。通过生物信息学工具进一步分析在神经胶质细胞丰富和皮质混合神经元细胞培养模型中鉴定出的其他差异表达蛋白。总而言之,这项研究证明了MS在急性TBI生物标志物的蛋白质鉴定和目标定量中的应用,并且是通过目标MS开发TBI生物标志物验证的第一步。

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