Leibniz Research Laboratories for Biotechnology and Artificial Organs (LEBAO), Department of Cardiothoracic, Transplantation and Vascular Surgery (HTTG), Hannover Medical School, 30625 Hannover, Germany.
REBIRTH-Cluster of Excellence, Hannover Medical School, 30625 Hannover, Germany.
Nat Commun. 2016 Dec 9;7:13602. doi: 10.1038/ncomms13602.
In vitro differentiation of human pluripotent stem cells (hPSCs) recapitulates early aspects of human embryogenesis, but the underlying processes are poorly understood and controlled. Here we show that modulating the bulk cell density (BCD: cell number per culture volume) deterministically alters anteroposterior patterning of primitive streak (PS)-like priming. The BCD in conjunction with the chemical WNT pathway activator CHIR99021 results in distinct paracrine microenvironments codifying hPSCs towards definitive endoderm, precardiac or presomitic mesoderm within the first 24 h of differentiation, respectively. Global gene expression and secretome analysis reveals that TGFß superfamily members, antagonist of Nodal signalling LEFTY1 and CER1, are paracrine determinants restricting PS progression. These data result in a tangible model disclosing how hPSC-released factors deflect CHIR99021-induced lineage commitment over time. By demonstrating a decisive, functional role of the BCD, we show its utility as a method to control lineage-specific differentiation. Furthermore, these findings have profound consequences for inter-experimental comparability, reproducibility, bioprocess optimization and scale-up.
体外分化人类多能干细胞(hPSCs)再现了人类胚胎发生的早期方面,但基础过程知之甚少且难以控制。在这里,我们表明,调节细胞总体密度(BCD:培养体积中的细胞数量)可以确定性地改变原始条纹(PS)样启动的前后模式。BCD 与化学 WNT 途径激活剂 CHIR99021 结合使用,可在分化的头 24 小时内分别将 hPSCs 编码为明确的内胚层、心前区中胚层或前体节中胚层,形成独特的旁分泌微环境。全基因表达和分泌组分析表明,TGFβ 超家族成员、Nodal 信号拮抗剂 LEFTY1 和 CER1 是旁分泌决定因素,限制 PS 进展。这些数据提供了一个有形的模型,揭示了 hPSC 释放的因子如何随着时间的推移改变 CHIR99021 诱导的谱系承诺。通过证明 BCD 的决定性、功能性作用,我们表明它作为控制谱系特异性分化的方法具有实用性。此外,这些发现对实验间的可比性、可重复性、生物工艺优化和放大具有深远的影响。