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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Surface glycan pattern of canine, equine, and ovine bone marrow-derived mesenchymal stem cells
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Surface glycan pattern of canine, equine, and ovine bone marrow-derived mesenchymal stem cells

机译:犬,马和卵骨骨髓衍生间充质干细胞表面甘油图案

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摘要

The use of bone marrow-derived mesenchymal stem cells (MSCs) for clinical and experimental studies is increasing, but full characterization of MSCs in veterinary species is hindered by the variability in species-specific cell surface marker expression and antibody cross reactivity. Recent studies demonstrated that the glycans in the glycocalyx of MSCs are promising candidates as cell biomarkers. In the present study, we analyzed the glycocalyx of canine MSCs (cMSCs), ovine MSCs (oMSCs), and equine MSCs (eMSCs) using a cell microarray procedure in which MSCs were spotted on microarray slides and incubated with a panel of 14 biotinylated lectins and Cy3-conjugated streptavidin. The signal intensity was then detected using a microarray scanner. The lectin-binding signals indicated that the MSC surface of the investigated species contained both N- and O-linked glycan types, with N-glycosylation predominating over O-glycosylation and fucosylation being more abundant than sialylation. Relative quantification revealed an interspecific difference between these glycans. In addition, cMSCs expressed more 2,3-linked sialic acid (MAL II), terminal lactosamine (RCA(120)), and 1,6 and 1,3 fucosylated oligosaccharides (PSA, LTA); oMSCs exhibited more T antigen (Jacalin), GalNAc1,3(LFuc1,2)Gal1,3/4GlcNAc1 (DBA), chitotriose (succinylated WGA), and 1,2-linked fucose (UEA I); and eMSCs showed a higher density of 2,6 sialic acids (SNA) and high mannose N-glycans (Con A). Using cell microarray methodology, we have for the first time demonstrated differences in the glycosylation profiles of cMSC, oMSC, and eMSC surfaces. These results could be valuable as resources and references for MSC differentiation and molecular remodeling in clinical cell-based therapy and tissue engineering studies. (c) 2017 International Society for Advancement of Cytometry
机译:用于临床和实验研究的骨髓衍生的间充质干细胞(MSCs)正在增加,但是通过物种特异性细胞表面标记表达和抗体交叉反应性的变异性地阻碍了兽医物种中的MSCs的全部表征。最近的研究表明,MSCs的甘油糖苷中的聚糖是具有细胞生物标志物的候选者。在本研究中,我们使用细胞微阵列程序分析了犬MSCs(CMSCs),绵羊MSCs(OMSCs)和标牌MSCs(EMSCs)的甘油癌,其中在微阵列上发现了MSC的载玻片,并与14个生物素化凝集素的面板孵育和Cy3-缀合的链霉抗生物素蛋白。然后使用微阵列扫描仪检测信号强度。凝集素结合信号表明所研究的物质的MSC表面含有N-和O型聚糖类型,具有促使O-糖基化的N-糖基化和岩藻糖基化比唾液化更丰富。相对量化显示这些聚糖之间的差异。此外,CMSCs表达了更多的2,3-连接的唾液酸(MAL II),末端乳糖胺(RCA(120))和1,6和1,3岩藻糖基化的寡糖(PSA,LTA); OMSCs展现出更多T抗原(Jacalin),Galnac1,3(LFuc1,2)Gal1,3 / 4GlcNAc1(DBA),氯霉素(琥珀酰化WGA)和1,2-连接的岩藻糖(UEA I); EMSCs显示出较高密度的2,6唾液酸(SNA)和高甘露糖N-聚糖(CON A)。使用细胞微阵列方法,我们第一次表现出CMSC,OMSC和EMSC表面的糖基化谱的差异。这些结果可能是有价值的作为临床细胞治疗和组织工程研究中MSC分化和分子重塑的资源和参考。 (c)2017年国际促进细胞计量学会

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