Department of Clinical Science, University of Bergen, Bergen, Norway.
Hybrid Technology Hub-Centre of Excellence, Faculty of Medicine, University of Oslo, Oslo, Norway.
Sci Rep. 2020 Jan 15;10(1):414. doi: 10.1038/s41598-019-57305-x.
Cell replacement therapies hold great therapeutic potential. Nevertheless, our knowledge of the mechanisms governing the developmental processes is limited, impeding the quality of differentiation protocols. Generating insulin-expressing cells in vitro is no exception, with the guided series of differentiation events producing heterogeneous cell populations that display mixed pancreatic islet phenotypes and immaturity. The achievement of terminal differentiation ultimately requires the in vivo transplantation of, usually, encapsulated cells. Here we show the impact of cell confinement on the pancreatic islet signature during the guided differentiation of alginate encapsulated human induced pluripotent stem cells (hiPSCs). Our results show that encapsulation improves differentiation by significantly reshaping the proteome landscape of the cells towards an islet-like signature. Pathway analysis is suggestive of integrins transducing the encapsulation effect into intracellular signalling cascades promoting differentiation. These analyses provide a molecular framework for understanding the confinement effects on hiPSCs differentiation while confirming its importance for this process.
细胞替代疗法具有巨大的治疗潜力。然而,我们对控制发育过程的机制的了解有限,这阻碍了分化方案的质量。体外产生胰岛素表达细胞也不例外,受指导的一系列分化事件产生了异质的细胞群体,表现出混合的胰岛表型和不成熟。最终实现终末分化通常需要体内移植,通常是包封细胞。在这里,我们展示了细胞限制对藻酸盐包封的人诱导多能干细胞(hiPSC)在指导分化过程中胰岛特征的影响。我们的结果表明,封装通过显著重塑细胞的蛋白质组景观向胰岛样特征来改善分化。途径分析表明整合素将封装效应转导为促进分化的细胞内信号级联。这些分析为理解限制对 hiPSC 分化的影响提供了分子框架,同时确认了其对该过程的重要性。