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Linoleic acid supplementation of cell culture media influences the phospholipid and lipid profiles of human reconstructed adipose tissue

机译:细胞培养基中亚油酸的添加会影响人类重建的脂肪组织的磷脂和脂质谱

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摘要

Reconstructed human adipose tissues represent novel tools available to perform in vitro pharmaco-toxicological studies. We used adipose-derived human stromal/stem cells to reconstruct, using tissue engineering techniques, such an adipose tridimensional model. To determine to what extent the in vitro model is representative of its native counterpart, adipogenic differentiation, triglycerides accumulation and phospholipids profiles were analysed. Ingenuity Pathway Analysis software revealed pathways enriched with differentially-expressed genes between native and reconstructed human adipose tissues. Interestingly, genes related to fatty acid metabolism were downregulated in vitro, which could be explained in part by the insufficient amount of essential fatty acids provided by the fetal calf serum used for the culture. Indeed, the lipid profile of the reconstructed human adipose tissues indicated a particular lack of linoleic acid, which could interfere with physiological cell processes such as membrane trafficking, signaling and inflammatory responses. Supplementation in the culture medium was able to influence the lipid profile of the reconstructed human adipose tissues. This study demonstrates the possibility to directly modulate the phospholipid profile of reconstructed human adipose tissues. This reinforces its use as a relevant physiological or pathological model for further pharmacological and metabolic studies of human adipose tissue functions.
机译:重建的人类脂肪组织代表了可用于进行体外药物毒理学研究的新型工具。通过组织工程技术,我们使用了脂肪来源的人基质/干细胞来重建这种脂肪三维模型。为了确定体外模型在多大程度上代表其天然对应物,分析了成脂分化,甘油三酸酯积累和磷脂谱。独创性途径分析软件揭示了在天然和重建的人类脂肪组织之间富含差异表达基因的途径。有趣的是,与脂肪酸代谢相关的基因在体外被下调,这部分可以由用于培养的胎牛血清提供的必需脂肪酸数量不足来解释。确实,重建的人类脂肪组织的脂质分布表明亚油酸的缺乏,这可能会干扰生理细胞过程,例如膜运输,信号传导和炎症反应。在培养基中补充能够影响重建的人脂肪组织的脂质分布。这项研究证明了直接调节重建的人类脂肪组织的磷脂谱的可能性。这加强了其作为相关的生理或病理模型的用途,用于进一步对人体脂肪组织功能进行药理和代谢研究。

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