单细胞聚糖和转录组分析揭示了人类ipsc衍生神经元的每个细胞亚群的聚糖特征。

IF 5.1 2区 医学 Q1 CELL & TISSUE ENGINEERING
Haruki Odaka, Hiroaki Tateno
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引用次数: 0

摘要

人类诱导多能干细胞(iPSC)衍生的神经元通常是异质的,这给疾病建模和细胞治疗带来了挑战。我们之前开发了单细胞聚糖和RNA测序(scGR-seq)来同时分析糖和转录组。在这里,我们应用scGR-seq来检测人类ipsc衍生的神经元的异质群体。我们确定了四个亚群:成熟神经元、未成熟神经元、未分化神经祖细胞(undiffNPCs)和间充质细胞(MCs)。凝集素结合模式显示α1,3在不同npc中高表达。MCs表现出与多聚lacnac识别凝集素(rLSLN)的强结合和多聚lacnac合成酶B3GNT2的高表达。伪时间分析显示,NPCs的一个亚群获得了间充质特征并分化为MCs。免疫细胞化学证实了抗lewis X (α1,3- focusylated glycan)抗体和rLSLN对无差异npc和MCs的特异性检测。除了识别细胞异质性外,scGR-seq还可以为ipsc衍生细胞发现聚糖标记物和检测探针,帮助其进一步进行细胞加工和操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-cell glycome and transcriptome profiling uncovers the glycan signature of each cell subpopulation of human iPSC-derived neurons.

Human induced pluripotent stem cell (iPSC)-derived neurons are often heterogeneous, posing challenges for disease modeling and cell therapy. We previously developed single-cell glycan and RNA sequencing (scGR-seq) to analyze the glycome and transcriptome simultaneously. Here, we applied scGR-seq to examine heterogeneous populations of human iPSC-derived neurons. We identified four subpopulations: mature neurons, immature neurons, undifferentiated neural progenitor cells (undiffNPCs), and mesenchymal cells (MCs). Lectin-binding patterns indicated high α1,3-fucose expression in undiffNPCs. MCs exhibited strong binding of a poly-LacNAc-recognizing lectin (rLSLN) and high expression of B3GNT2, a poly-LacNAc synthetic enzyme. Pseudotime analysis revealed that a subpopulation of NPCs acquired mesenchymal features and differentiated into MCs. Immunocytochemistry confirmed the specific detection of undiffNPCs and MCs using anti-Lewis X (α1,3-fucosylated glycan) antibodies and rLSLN. Beyond identifying cell heterogeneity, scGR-seq enables the discovery of glycan markers and detection probes for iPSC-derived cells, aiding in their further cell processing and manipulation.

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来源期刊
Stem Cell Reports
Stem Cell Reports CELL & TISSUE ENGINEERING-CELL BIOLOGY
CiteScore
10.50
自引率
1.70%
发文量
200
审稿时长
28 weeks
期刊介绍: Stem Cell Reports publishes high-quality, peer-reviewed research presenting conceptual or practical advances across the breadth of stem cell research and its applications to medicine. Our particular focus on shorter, single-point articles, timely publication, strong editorial decision-making and scientific input by leaders in the field and a "scoop protection" mechanism are reasons to submit your best papers.
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