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Lipidomic profiling of patient-specific iPSC-derived hepatocyte-like cells

机译:患者特异性iPSC来源的肝细胞样细胞的血脂分析

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Hepatocyte-like cells (HLCs) differentiated from human induced pluripotent stem cells (iPSCs) offer an alternative model to primary human hepatocytes to study lipid aberrations. However, the detailed lipid profile of HLCs is yet unknown. In the current study, functional HLCs were differentiated from iPSCs generated from dermal fibroblasts of three individuals by a three-step protocol through the definitive endoderm (DE) stage. In parallel, detailed lipidomic analyses as well as gene expression profiling of a set of lipid-metabolism-related genes were performed during the entire differentiation process from iPSCs to HLCs. Additionally, fatty acid (FA) composition of the cell culture media at different stages was determined. Our results show that major alterations in the molecular species of lipids occurring during DE and early hepatic differentiation stages mainly mirror the quality and quantity of the FAs supplied in culture medium at each stage. Polyunsaturated phospholipids and sphingolipids with a very long FA were produced in the cells at a later stage of differentiation. This work uncovers the previously unknown lipid composition of iPSC-HLCs and its alterations during the differentiation in conjunction with the expression of key lipid-associated genes. Together with biochemical, functional and gene expression measurements, the lipidomic analyses allowed us to improve our understanding of the concerted influence of the exogenous metabolite supply and cellular biosynthesis essential for iPSC-HLC differentiation and function. Importantly, the study describes in detail a cell model that can be applied in exploring, for example, the lipid metabolism involved in the development of fatty liver disease or atherosclerosis.
机译:从人诱导的多能干细胞(iPSC)分化出来的类肝细胞(HLC)为人类脂质细胞的研究提供了一种替代模型。但是,HLC的详细脂质分布图尚不清楚。在当前的研究中,功能性HLCs通过确定性内胚层(DE)阶段的三步方案与由三个个体的真皮成纤维细胞生成的iPSCs区别开来。同时,在从iPSC到HLC的整个分化过程中,进行了详细的脂质组学分析以及一组脂质代谢相关基因的基因表达谱分析。另外,确定了细胞培养基在不同阶段的脂肪酸(FA)组成。我们的结果表明,在DE和早期肝分化阶段发生的脂质分子种类的重大变化,主要反映了每个阶段在培养基中供应的FA的质量和数量。在分化的后期,细胞中会产生具有很长FA的多不饱和磷脂和鞘脂。这项工作揭示了iPSC-HLCs以前未知的脂质组成及其分化过程中与关键脂质相关基因的表达相结合的变化。结合生物化学,功能和基因表达测量,脂质组学分析使我们能够加深对iPSC-HLC分化和功能必不可少的外源代谢物供应和细胞生物合成的协同影响的了解。重要的是,该研究详细描述了一种细胞模型,可用于探索例如与脂肪肝疾病或动脉粥样硬化发展有关的脂质代谢。

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