首页> 外文期刊>Analytical chemistry >Approach for Profiling of Glycosphingolipid Glycosylation by Multiplexed Capillary Gel Electrophoresis Coupled to Laser-Induced Fluorescence Detection To Identify Cell-Surface Markers of Human Pluripotent Stem Cells and Derived Cardiomyocytes
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Approach for Profiling of Glycosphingolipid Glycosylation by Multiplexed Capillary Gel Electrophoresis Coupled to Laser-Induced Fluorescence Detection To Identify Cell-Surface Markers of Human Pluripotent Stem Cells and Derived Cardiomyocytes

机译:通过多重毛细管凝胶电泳偶联糖磷脂糖基化的方法,偶联激光诱导的荧光检测,鉴定人多能干细胞和衍生心肌细胞的细胞表面标志物

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Application of human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) as tissue transplants in regenerative medicine depends on cell-surface marker-based characterization and/or purification. Glycosphingolipids (GSLs) are a family of highly diverse surface-exposed biomolecules that have been neglected as potential surface markers for hiPSC-CMs due to significant analytical challenges. Here, we describe the development of a novel and high-throughput-compatible workflow for the analysis of GSL-derived glycans based on ceramide glycanase digestion, 8-aminopyrene-1,3,6-trisulfonic acid (APTS) labeling, and multiplexed capillary gel electrophoresis coupled to laser-induced fluorescence detection (xCGE-LIF). GSL glycans were detected with highly reproducible migration times after repeated analysis by xCGE-LIF. We built up a migration time database comprising 38 different glycan species, and we showed exemplarily that as few as 10 pg of fucosyl lactotetra was detectable. GSL glycan profiling could be performed with 10(5) human induced pluripotent stem cells, and we quantitatively dissected global alterations of GSL glycosylation of human induced pluripotent stem cells (hiPSCs) and hiPSC-CMs by employing xCGE-LIF. In our study, we observed a general switch from complex GSLs with lacto-and globo-series core structures comprising the well-known human pluripotent stem cell marker stage-specific embryonic antigen 3 (SSEA3) and SSEA4 in hiPSCs toward the simple gangliosides GM3 and GD3 in hiPSC-CMs. This is the first description of GM3 and GD3 being highly abundant GSLs on the cell surface of stem cell-derived cardiomyocytes.
机译:人诱导多能干细胞衍生的心肌细胞(HIPSC-CMS)作为再生药中的组织移植的应用取决于细胞表面标记物的表征和/或纯化。糖磷脂(GSL)是一种高度多样化的表面暴露生物分子,由于显着的分析挑战而被忽略被忽略为HIPSC-CMS的潜在表面标志物。在这里,我们描述了基于神经酰胺甘油酶消化,8-氨基芘-1,3,6-三磺酸(APTS)标记和多重毛细血管的GSL衍生的聚糖的开发用于分析GSL衍生的聚糖和多重毛细血管凝胶电泳耦合到激光诱导的荧光检测(Xcge-LiF)。通过XCGE-LIF重复分析后,通过高度可重复的迁移时间检测GSL Glycans。我们建立了包含38种不同的聚糖种类的迁移时间库,并且我们示例性地显示出少于10 pg岩藻糖基Lactotetta是可检测到的。可以用10(5)个人诱导的多能干细胞进行GSL Glycan分析,并通过使用XCGE-LIF定量解释人诱导的多能干细胞(HIPSC)和HIPSC-CM的GSL糖基化的全局改变。在我们的研究中,我们观察到来自乳酸和Gloom系列核心结构的复杂GSL的一般切换,所述乳酸和Gloom系列核心结构包括众所周知的人类多能干细胞标志物阶段特异性胚胎抗原3(SSEA3)和SSEA4,在HIPSC中朝向简单的神经节苷脂GM3和HIPSC-CMS中的GD3。这是GM3和GD3在干细胞衍生心肌细胞的细胞表面上具有高度丰富的GSL的第一个描述。

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