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成骨分化过程中间充质干细胞的内代谢组和外代谢组串扰。

Endo- and Exometabolome Crosstalk in Mesenchymal Stem Cells Undergoing Osteogenic Differentiation.

机构信息

Department of Chemistry, University of Aveiro, CICECO-Aveiro Institute of Materials (CICECO/UA), 3810-193 Aveiro, Portugal.

Department of Analytical Chemistry, University of Chemistry and Technology, 166 28 Prague, Czech Republic.

出版信息

Cells. 2022 Apr 7;11(8):1257. doi: 10.3390/cells11081257.

Abstract

This paper describes, for the first time to our knowledge, a lipidome and exometabolome characterization of osteogenic differentiation for human adipose tissue stem cells (hAMSCs) using nuclear magnetic resonance (NMR) spectroscopy. The holistic nature of NMR enabled the time-course evolution of cholesterol, mono- and polyunsaturated fatty acids (including ω-6 and ω-3 fatty acids), several phospholipids (phosphatidylcholine, phosphatidylethanolamine, sphingomyelins, and plasmalogens), and mono- and triglycerides to be followed. Lipid changes occurred almost exclusively between days 1 and 7, followed by a tendency for lipidome stabilization after day 7. On average, phospholipids and longer and more unsaturated fatty acids increased up to day 7, probably related to plasma membrane fluidity. Articulation of lipidome changes with previously reported polar endometabolome profiling and with exometabolome changes reported here in the same cells, enabled important correlations to be established during hAMSC osteogenic differentiation. Our results supported hypotheses related to the dynamics of membrane remodelling, anti-oxidative mechanisms, protein synthesis, and energy metabolism. Importantly, the observation of specific up-taken or excreted metabolites paves the way for the identification of potential osteoinductive metabolites useful for optimized osteogenic protocols.

摘要

本文首次利用核磁共振(NMR)光谱法描述了人类脂肪组织干细胞(hAMSCs)成骨分化的脂质组学和外代谢组学特征。NMR 的整体性质能够跟踪胆固醇、单不饱和和多不饱和脂肪酸(包括 ω-6 和 ω-3 脂肪酸)、几种磷脂(磷脂酰胆碱、磷脂酰乙醇胺、神经鞘磷脂和脑苷脂)以及单和三酰甘油的时间进程演变。脂质变化几乎仅在第 1 天至第 7 天之间发生,之后第 7 天之后脂质组趋于稳定。平均而言,磷脂和更长、更不饱和的脂肪酸增加到第 7 天,这可能与质膜流动性有关。将脂质组学变化与之前报道的极性内代谢组学分析以及本文中同一细胞中的外代谢组学变化联系起来,使我们能够在 hAMSC 成骨分化过程中建立重要的相关性。我们的结果支持与膜重塑动力学、抗氧化机制、蛋白质合成和能量代谢相关的假说。重要的是,观察到特定的摄取或排泄代谢物为鉴定潜在的成骨诱导代谢物铺平了道路,这些代谢物可用于优化成骨方案。

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