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Muscle cells challenged with saturated fatty acids mount an autonomous inflammatory response that activates macrophages

机译:用饱和脂肪酸挑战的肌肉细胞会发生自主炎症反应从而激活巨噬细胞

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摘要

Obesity is associated with chronic low-grade inflammation. Within adipose tissue of mice fed a high fat diet, resident and infiltrating macrophages assume a pro-inflammatory phenotype characterized by the production of cytokines which in turn impact on the surrounding tissue. However, inflammation is not restricted to adipose tissue and high fat-feeding is responsible for a significant increase in pro-inflammatory cytokine expression in muscle. Although skeletal muscle is the major disposer of dietary glucose and a major determinant of glycemia, the origin and consequence of muscle inflammation in the development of insulin resistance are poorly understood.We used a cell culture approach to investigate the vectorial crosstalk between muscle cells and macrophages upon exposure to physiological, low levels of saturated and unsaturated fatty acids. Inflammatory pathway activation and cytokine expression were analyzed in L6 muscle cells expressing myc-tagged GLUT4 (L6GLUT4myc) exposed to 0.2 mM palmitate or palmitoleate. Conditioned media thereof, free of fatty acids, were then tested for their ability to activate RAW264.7 macrophages.Palmitate -but not palmitoleate- induced IL-6, TNFα and CCL2 expression in muscle cells, through activation of the NF-κB pathway. Palmitate (0.2 mM) alone did not induce insulin resistance in muscle cells, yet conditioned media from palmitate-challenged muscle cells selectively activated macrophages towards a pro-inflammatory phenotype.These results demonstrate that low concentrations of palmitate activate autonomous inflammation in muscle cells to release factors that turn macrophages pro-inflammatory. We hypothesize that saturated fat-induced, low-grade muscle cell inflammation may trigger resident skeletal muscle macrophage polarization, possibly contributing to insulin resistance in vivo.
机译:肥胖与慢性低度炎症有关。在高脂饮食的小鼠脂肪组织中,常驻和浸润性巨噬细胞呈现促炎表型,其特征在于细胞因子的产生,继而影响周围组织。然而,炎症并不局限于脂肪组织,高脂肪喂养导致肌肉中促炎性细胞因子表达的显着增加。尽管骨骼肌是膳食葡萄糖的主要沉积物和血糖的主要决定因素,但人们对胰岛素抵抗发展过程中肌肉炎症的起源和后果知之甚少。我们使用细胞培养方法研究了肌肉细胞与巨噬细胞之间的矢量串扰暴露于生理,低含量的饱和和不饱和脂肪酸后。在暴露于0.2 mM棕榈酸酯或棕榈酸酯的表达myc标签的GLUT4(L6GLUT4myc)的L6肌肉细胞中,分析了炎症途径的活化和细胞因子的表达。然后测试不含脂肪酸的条件培养基激活RAW264.7巨噬细胞的能力。通过激活NF-κB途径,棕榈酸而不是棕榈油酸酯诱导肌肉细胞中IL-6,TNFα和CCL2表达。单独的棕榈酸酯(0.2 mM)不会在肌肉细胞中诱导胰岛素抵抗,但是来自棕榈酸酯挑战的肌肉细胞的条件培养基选择性地将巨噬细胞激活为促炎表型,这些结果表明低浓度的棕榈酸酯激活了肌肉细胞中的自主炎症以释放。使巨噬细胞促炎的因子。我们假设饱和脂肪诱导的低度肌细胞炎症可能触发驻留的骨骼肌巨噬细胞极化,可能在体内促进胰岛素抵抗。

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