首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Large-scaled human serum sphingolipid profiling by using reversed-phase liquid chromatography coupled with dynamic multiple reaction monitoring of mass spectrometry: Method development and application in hepatocellular carcinoma
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Large-scaled human serum sphingolipid profiling by using reversed-phase liquid chromatography coupled with dynamic multiple reaction monitoring of mass spectrometry: Method development and application in hepatocellular carcinoma

机译:反相液相色谱结合质谱动态多反应监测技术进行大规模人血清鞘脂谱分析:方法开发与在肝细胞癌中的应用

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Sphingolipids are a family of bioactive molecules with high structural diversity and complexity. They not only serve as integral components of cellular membrane, but also play pivotal roles in signaling and other cellular events. It is desirable for the development of sensitive, robust and structural-specific analytical approaches enabling rapid determination of as many sphingolipid species as possible. Herein we present an analytical method for large-scaled profiling of sphigolipids in human serum, which consisted of an improved extraction protocol using tert-butyl methyl ether combined with mild alkaline hydrolysis, and an ultra high performance reversed-phase liquid chromatography-dynamic multiple reaction monitoring-mass spectrometric (RPLC-dynamic MRM-MS) method. In total 84 endogenous sphingolipid species covering six subcategories (i.e. free sphingoid base, dihydroceramide, ceramide, hexosylceramide, lactosylceramide, and sphingomyelin), were separated and quantified in a single run within 10min. A broad linear range over 2.5-4 orders of magnitude (r~2>0.99), a limit of detection of 0.01-0.17pmol/mL, and a limit of quantitation of 0.02-0.42pmol/mL were obtained for each subcategory. Average recovery of each subcategory was within 85.6-95.6%. Median values of coefficient of variation (CV) of all detected 84 sphingolipids were 3.9% and 6.8% for intraday and interday precision, respectively. This method was exemplarily applied in a study regarding dysregulated sphingolipid homeostasis in hepatocellular carcinoma. The establishment of this method provides a useful tool for serum-based high throughput screening of sphingolipid biomarkers and mechanism investigation of sphingolipid metabolic regulation in human disease.
机译:鞘脂是具有高结构多样性和复杂性的生物活性分子家族。它们不仅充当细胞膜的组成部分,而且在信号传递和其他细胞事件中起关键作用。希望开发灵敏,鲁棒且结构特定的分析方法,从而能够快速确定尽可能多的鞘脂种类。本文中,我们提出了一种用于人血清中蛇形血脂的大规模分析的分析方法,该方法包括使用叔丁基甲基醚与温和的碱水解相结合的改进提取方案,以及超高性能反相液相色谱-动态多重反应监测质谱(RPLC-动态MRM-MS)方法。在10分钟内,总共进行了一次分离并定量分析了涵盖六个亚类的84种内源性鞘脂种类(即游离鞘氨醇碱,二氢神经酰胺,神经酰胺,己糖神经酰胺,乳糖基神经酰胺和鞘磷脂)。对于每个子类别,获得的线性范围超过2.5-4个数量级(r〜2> 0.99),检测极限为0.01-0.17pmol / mL,定量极限为0.02-0.42pmol / mL。每个子类别的平均回收率在85.6-95.6%之内。对于日内和日间精度,所有检测到的84个鞘脂的变异系数(CV)的中值分别为3.9%和6.8%。该方法示例性地用于关于肝细胞癌中鞘脂稳态失调的研究中。该方法的建立为基于血清的鞘脂生物标志物的高通量筛选以及人类疾病中鞘脂代谢调节的机制研究提供了有用的工具。

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