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脂质组学揭示多能干细胞向神经和中胚层谱系分化过程中的细胞特异性变化。

Lipidomics Reveals Cell Specific Changes During Pluripotent Differentiation to Neural and Mesodermal Lineages.

作者信息

Odenkirk Melanie T, Jostes Haley C, Francis Kevin, Baker Erin S

机构信息

Department of Chemistry, North Carolina State University, Raleigh, NC.

Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, NC.

出版信息

bioRxiv. 2025 Jan 1:2024.12.31.630916. doi: 10.1101/2024.12.31.630916.

Abstract

Due to their self-renewal and differentiation capabilities, pluripotent stem cells hold immense potential for advancing our understanding of human disease and developing cell-based or pharmacological interventions. Realizing this potential, however, requires a thorough understanding of the basal cellular mechanisms which occur during differentiation. Lipids are critical molecules that define the morphological, biochemical, and functional role of cells. This, combined with emerging evidence linking lipids to neurodegeneration, cardiovascular health, and other diseases, makes lipids a critical class of analytes to assess normal and abnormal cellular processes. While previous work has examined the lipid composition of stem cells, uncertainties remain about which changes are conserved and which are unique across distinct cell types. In this study, we investigated lipid alterations of induced pluripotent stem cells (iPSCs) at critical stages of differentiation toward neural or mesodermal fates. Lipdiomic analyses of distinct differentiation stages were completed using a platform coupling liquid chromatography, ion mobility spectrometry, and mass spectrometry (LC-IMS-MS) separations. Results illustrated a shared triacylglyceride and free fatty acid accumulation in early iPSCs that were utilized at different stages of differentiation. Unique fluctuations through differentiation were also observed for certain phospholipid classes, sphingomyelins and ceramides. These insights into lipid fluctuations across iPSC differentiation enhance our fundamental understanding of lipid metabolism within pluripotent stem cells and during differentiation, while also paving the way for a more precise and effective application of pluripotent stem cells in human disease interventions.

摘要

由于其自我更新和分化能力,多能干细胞在推进我们对人类疾病的理解以及开发基于细胞或药物的干预措施方面具有巨大潜力。然而,要实现这一潜力,需要深入了解分化过程中发生的基础细胞机制。脂质是定义细胞形态、生化和功能作用的关键分子。这一点,再加上将脂质与神经退行性疾病、心血管健康及其他疾病联系起来的新证据,使得脂质成为评估正常和异常细胞过程的一类关键分析物。虽然先前的研究已经考察了干细胞的脂质组成,但对于哪些变化在不同细胞类型中是保守的、哪些是独特的,仍存在不确定性。在本研究中,我们调查了诱导多能干细胞(iPSC)在向神经或中胚层命运分化的关键阶段的脂质变化。使用液相色谱、离子淌度光谱和质谱(LC-IMS-MS)联用的平台,完成了对不同分化阶段的脂质组分析。结果表明,早期iPSC中存在共同的甘油三酯和游离脂肪酸积累,它们在分化的不同阶段被利用。某些磷脂类、鞘磷脂和神经酰胺在分化过程中也观察到独特的波动。这些对iPSC分化过程中脂质波动的见解,增强了我们对多能干细胞内以及分化过程中脂质代谢的基本理解,同时也为多能干细胞在人类疾病干预中的更精确和有效应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4791/11722439/a5e1cf6b1a68/nihpp-2024.12.31.630916v1-f0001.jpg

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