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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Initial WNT/β-Catenin Activation Enhanced Mesoderm Commitment, Extracellular Matrix Expression, Cell Aggregation and Cartilage Tissue Yield From Induced Pluripotent Stem Cells
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Initial WNT/β-Catenin Activation Enhanced Mesoderm Commitment, Extracellular Matrix Expression, Cell Aggregation and Cartilage Tissue Yield From Induced Pluripotent Stem Cells

机译:初始WNT /β-连环蛋白激活增强了中胚层的预测,细胞外基质表达,细胞聚集和来自诱导多能干细胞的软骨组织产量

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摘要

Mesodermal differentiation of induced pluripotent stem cells (iPSCs) in vitro and subsequent specification into mesodermal derivatives like chondrocytes is currently afflicted with a substantial cell loss that severely limits tissue yield. More knowledge on the key players regulating mesodermal differentiation of iPSCs is currently needed to drive all cells into the desired lineage and to overcome the current need for intermediate cell selection steps to remove misdifferentiated cells. Using two independent human iPSC lines, we here report that a short initial WNT/β-catenin pulse induced by the small molecule CHIR99021 (24h) enhanced expression of mesodermal markers (PDGFRα, HAND1, KDR, and GATA4), supported the exit from pluripotency (decreased OCT4, SOX2 and LIN28A) and inhibited ectodermal misdifferentiation (reduced PAX6, TUBB3 and NES). Importantly, the initial CHIR pulse increased cell proliferation until day 14 (5-fold), adjusted expression of adhesion-related genes (CDH3 up, CDH6 down) and increased extracellular matrix (ECM)-related gene expression (COL6, COL1, COL3, COL5, DCN, NPNT, LUM, MGP, MATN2, VTN), thus yielding more matrix-interacting progenitors with a high aggregation capability. Enhanced contribution to chondrogenic pellet formation increased the cell yield after eight weeks 200-fold compared to controls. The collagen type II and proteoglycan-positive area was enlarged in the CHIR group, indicating an increased number of cartilage-forming cells. Conclusively, short initial WNT activation improved mesoderm commitment and our data demonstrated for the first time to our knowledge that acting via stimulation of cell proliferation, ECM expression and cell aggregation WNT pulsing is a key step to make cell selection steps before chondrogenesis obsolete. This advanced understanding of the WNT/β-catenin function is a major step towards robust and efficient generation of high-quality mesodermal progenitors from human iPSCs and towards rescuing low tissue yield during subsequent in vitro chondrogenesis, which is highly desired for clinical cartilage regeneration, disease modelling and drug screening.
机译:体外诱导多能干细胞(IPSC)和随后的细胞衍生物的诱导多能干细胞(IPSC)的中模胞分化目前受到严重限制组织产量的大量细胞损失。目前需要对调节IPSCS的中模胞分化的关键参与者的更多知识,以将所有细胞驱动到所需的谱系中,并克服当前细胞选择步骤以去除误区的细胞。使用两条独立的人类IPSC线路,我们在此报告,由小分子Chir99021(24h)诱导的短初始Wnt /β-catenin脉冲增强了中胚层标记物的表达(PDGFRα,Hand1,Kdr和Gata4),支持来自多能性的出口(减少OCT4,SOX2和LIN28A)并抑制异位误报(减少PAX6,TUBB3和NES)。重要的是,初始Chir脉冲增加细胞增殖,直到第14天(5倍),调整后的粘附相关基因(CDH3 UP,CDH6下)和增加的细胞外基质(ECM) - 相关基因表达(COL6,COL1,COL3, COL5,DCN,NPNT,LUM,MGP,MATN2,VTN),从而产生更多的基质相互作用的祖细胞,具有高聚集能力。与对照相比,对软骨颗粒形成的增强对细胞颗粒形成的贡献增加了细胞产率。在CHIR组中,胶原蛋白II型和蛋白多糖阳性面积增大,表明软骨形成细胞数量增加。结论,短的初始WNT激活改善了Mesoderm承诺,我们的数据首次证明了通过刺激细胞增殖,ECM表达和细胞聚集Wnt脉冲是制备软骨发生后的细胞选择步骤的关键步骤。这种对Wnt /β-catenin功能的先进理解是朝向人IPSCs的高质量中胚层祖细胞的稳健和有效地产生的主要步骤,以及在随后的体外软骨发生期间抵御低组织产量,这对于临床软骨再生来说是非常需要的,疾病建模和药物筛选。

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