Centre for Nanobiotechnology, Vellore Institute of Technology, Vellore 632014, Tamil Nadu, India.
Int J Mol Sci. 2022 Dec 29;24(1):589. doi: 10.3390/ijms24010589.
Lipid metabolism is the major intracellular mechanism driving a variety of cellular functions such as energy storage, hormone regulation and cell division. Lipids, being a primary component of the cell membrane, play a pivotal role in the survival of macrophages. Lipids are crucial for a variety of macrophage functions including phagocytosis, energy balance and ageing. However, functions of lipids in macrophages vary based on the site the macrophages are residing at. Lipid-loaded macrophages have recently been emerging as a hallmark for several diseases. This review discusses the significance of lipids in adipose tissue macrophages, tumor-associated macrophages, microglia and peritoneal macrophages. Accumulation of macrophages with impaired lipid metabolism is often characteristically observed in several metabolic disorders. Stress signals differentially regulate lipid metabolism. While conditions such as hypoxia result in accumulation of lipids in macrophages, stress signals such as nutrient deprivation initiate lipolysis and clearance of lipids. Understanding the biology of lipid accumulation in macrophages requires the development of potentially active modulators of lipid metabolism.
脂质代谢是驱动多种细胞功能的主要细胞内机制,如能量储存、激素调节和细胞分裂。脂质作为细胞膜的主要成分,在巨噬细胞的存活中起着关键作用。脂质对于巨噬细胞的多种功能至关重要,包括吞噬作用、能量平衡和衰老。然而,脂质在巨噬细胞中的功能因巨噬细胞所处的位置而异。载脂巨噬细胞最近已成为多种疾病的标志。本综述讨论了脂质在脂肪组织巨噬细胞、肿瘤相关巨噬细胞、小胶质细胞和腹腔巨噬细胞中的重要性。在几种代谢紊乱中,通常可以观察到代谢受损的巨噬细胞积累。应激信号差异调节脂质代谢。虽然缺氧等条件导致巨噬细胞中脂质的积累,但营养物质缺乏等应激信号会引发脂肪分解和脂质清除。要了解巨噬细胞中脂质积累的生物学特性,需要开发潜在的活性脂质代谢调节剂。