Inflammation Meets Metabolism: Roles for the Receptor for Advanced Glycation End Products Axis in Cardiovascular Disease.

Immunometabolism Pub Date : 2021-01-01 Epub Date: 2021-06-02 DOI:10.20900/immunometab20210024
Laura Senatus, Michael MacLean, Lakshmi Arivazhagan, Lander Egaña-Gorroño, Raquel López-Díez, Michaele B Manigrasso, Henry H Ruiz, Carolina Vasquez, Robin Wilson, Alexander Shekhtman, Paul F Gugger, Ravichandran Ramasamy, Ann Marie Schmidt
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Abstract

Fundamental modulation of energy metabolism in immune cells is increasingly being recognized for the ability to impart important changes in cellular properties. In homeostasis, cells of the innate immune system, such as monocytes, macrophages and dendritic cells (DCs), are enabled to respond rapidly to various forms of acute cellular and environmental stress, such as pathogens. In chronic stress milieus, these cells may undergo a re-programming, thereby triggering processes that may instigate tissue damage and failure of resolution. In settings of metabolic dysfunction, moieties such as excess sugars (glucose, fructose and sucrose) accumulate in the tissues and may form advanced glycation end products (AGEs), which are signaling ligands for the receptor for advanced glycation end products (RAGE). In addition, cellular accumulation of cholesterol species such as that occurring upon macrophage engulfment of dead/dying cells, presents these cells with a major challenge to metabolize/efflux excess cholesterol. RAGE contributes to reduced expression and activities of molecules mediating cholesterol efflux. This Review chronicles examples of the roles that sugars and cholesterol, via RAGE, play in immune cells in instigation of maladaptive cellular signaling and the mediation of chronic cellular stress. At this time, emerging roles for the ligand-RAGE axis in metabolism-mediated modulation of inflammatory signaling in immune cells are being unearthed and add to the growing body of factors underlying pathological immunometabolism.

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炎症与代谢:高级糖化终产物受体轴在心血管疾病中的作用》(Receptor for Advanced Glycation End Products Axis in Cardiovascular Disease)。
人们越来越认识到,免疫细胞能量代谢的基本调节方式能够使细胞特性发生重要变化。在平衡状态下,先天性免疫系统的细胞,如单核细胞、巨噬细胞和树突状细胞(DCs),能够对各种形式的急性细胞和环境压力(如病原体)做出快速反应。在慢性压力环境下,这些细胞可能会重新编程,从而引发可能导致组织损伤和解救失败的过程。在新陈代谢功能失调的情况下,过量的糖(葡萄糖、果糖和蔗糖)等分子会在组织中积累,并可能形成高级糖化终产物(AGEs),这是高级糖化终产物受体(RAGE)的信号配体。此外,细胞中胆固醇种类的积累,如巨噬细胞吞噬死亡/变性细胞时发生的胆固醇积累,给这些细胞代谢/排出过量胆固醇带来了重大挑战。RAGE 有助于降低胆固醇外流介导分子的表达和活性。本综述列举了一些实例,说明糖和胆固醇通过 RAGE 在免疫细胞中发挥的作用,即诱发不适应的细胞信号传导和调解慢性细胞压力。目前,配体-RAGE 轴在新陈代谢介导的免疫细胞炎症信号调节中的新作用正在被发掘出来,为越来越多的病理免疫代谢基础因素增添了新的内容。
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