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Effect of high-fat diet on peripheral blood mononuclear cells and adipose tissue in early stages of diet-induced weight gain

机译:高脂饮食对饮食诱导体重增加早期外周血单核细胞的影响及脂肪组织

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Subcutaneous adipose tissue (scAT) and peripheral blood mononuclear cells (PBMC) play a significant role in obesity-associated systemic low-grade inflammation. High-fat diet (HFD) is known to induce inflammatory changes in both scAT and PBMC. However, the time course of the effect of HFD on these systems is still unknown. The aim of the present study was to determine the time course of the effect of HFD on PBMC and scAT. New Zealand white rabbits were fed HFD for 5 or 10 weeks (i.e. HFD-5 and HFD-10) or regular chow (i.e. control (CNT)-5 and CNT-10). Thereafter, metabolic and inflammatory parameters of PBMC and scAT were quantified. HFD induced hyperfattyacidaemia in HFD-5 and HFD-10 groups, with the development of insulin resistance in HFD-10, while no changes were observed in scAT lipid metabolism and inflammatory status. HFD activated the inflammatory pathways in PBMC of HFD-5 group and induced modified autophagy in that of HFD-10. The rate of fat oxidation in PBMC was directly associated with the expression of inflammatory markers and tended to inversely associate with autophagosome formation markers in PBMC. HFD affected systemic substrate metabolism, and the metabolic, inflammatory and autophagy pathways in PBMC in the absence of metabolic and inflammatory changes in scAT. Dietary approaches or interventions to avert HFD-induced changes in PBMC could be essential to prevent metabolic and inflammatory complications of obesity and promote healthier living.
机译:皮下脂肪组织(SCAT)和外周血单核细胞(PBMC)在肥胖相关的系统性低级炎症中起着重要作用。已知高脂饮食(HFD)诱导SCAT和PBMC中的炎症变化。但是,HFD对这些系统的影响的时间过程仍然未知。本研究的目的是确定HFD对PBMC和SCAT效果的时间过程。将新西兰白兔送入HFD 5或10周(即HFD-5和HFD-10)或常规食物(即控制(CNT)-5和CNT-10)。此后,量化PBMC和SCAT的代谢和炎症参数。 HFD在HFD-5和HFD-10组中诱导Hyperfattyacidaemia,随着HFD-10的胰岛素抗性的发展,而在Scat脂质代谢和炎症状态下没有观察到任何变化。 HFD活化HFD-5组PBMC中的炎症途径,并以HFD-10的改性自噬诱导。 PBMC中脂肪氧化率与炎症标志物的表达直接相关,并倾向于与PBMC中的自噬体形成标志物递减。 HFD影响全身底物代谢,以及PBMC中的代谢,炎症和自噬途径在没有代谢和SCAT中的炎症变化的情况下。避免氟氯合金诱导的PBMC变化的饮食方法或干预措施对于预防肥胖的代谢和炎症并发症至关重要,并促进更健康的生活。

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