Innate immune cells link dietary cues to normal and abnormal metabolic regulation

IF 27.7 1区 医学 Q1 IMMUNOLOGY
Peng Zhang, Kosuke Watari, Michael Karin
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Abstract

A slew of common metabolic disorders, including type 2 diabetes, metabolic dysfunction-associated steatotic liver disease and steatohepatitis, are exponentially increasing in our sedentary and overfed society. While macronutrients directly impact metabolism and bioenergetics, new evidence implicates immune cells as critical sensors of nutritional cues and important regulators of metabolic homeostasis. A deeper interrogation of the intricate and multipartite interactions between dietary components, immune cells and metabolically active tissues is needed for a better understanding of metabolic regulation and development of new treatments for common metabolic diseases. Responding to macronutrients and micronutrients, immune cells play pivotal roles in interorgan communication between the microbiota, small intestine, metabolically active cells including hepatocytes and adipocytes, and the brain, which controls feeding behavior and energy expenditure. This Review focuses on the response of myeloid cells and innate lymphocytes to dietary cues, their cross-regulatory interactions and roles in normal and aberrant metabolic control. Karin and colleagues review the response of myeloid cells and innate lymphocytes to dietary cues, their cross-regulatory interactions and roles in normal and aberrant metabolic control.

Abstract Image

先天免疫细胞将饮食线索与正常和异常的代谢调节联系起来
在我们这个久坐不动、食物过剩的社会里,一系列常见的代谢紊乱,包括2型糖尿病、代谢功能障碍相关的脂肪变性肝病和脂肪性肝炎,正在呈指数级增长。虽然宏量营养素直接影响代谢和生物能量学,但新的证据表明免疫细胞是营养线索的关键传感器和代谢稳态的重要调节者。为了更好地理解代谢调节和开发常见代谢疾病的新疗法,需要对饮食成分、免疫细胞和代谢活跃组织之间错综复杂的多方相互作用进行更深入的研究。免疫细胞对宏量营养素和微量营养素作出反应,在微生物群、小肠、代谢活跃细胞(包括肝细胞和脂肪细胞)和控制摄食行为和能量消耗的大脑之间的器官间通讯中发挥关键作用。本文综述了骨髓细胞和先天淋巴细胞对饮食线索的反应,它们的交叉调节相互作用以及在正常和异常代谢控制中的作用。Karin和同事回顾了骨髓细胞和先天淋巴细胞对饮食线索的反应,它们的交叉调节相互作用以及在正常和异常代谢控制中的作用。
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来源期刊
Nature Immunology
Nature Immunology 医学-免疫学
CiteScore
40.00
自引率
2.30%
发文量
248
审稿时长
4-8 weeks
期刊介绍: Nature Immunology is a monthly journal that publishes the highest quality research in all areas of immunology. The editorial decisions are made by a team of full-time professional editors. The journal prioritizes work that provides translational and/or fundamental insight into the workings of the immune system. It covers a wide range of topics including innate immunity and inflammation, development, immune receptors, signaling and apoptosis, antigen presentation, gene regulation and recombination, cellular and systemic immunity, vaccines, immune tolerance, autoimmunity, tumor immunology, and microbial immunopathology. In addition to publishing significant original research, Nature Immunology also includes comments, News and Views, research highlights, matters arising from readers, and reviews of the literature. The journal serves as a major conduit of top-quality information for the immunology community.
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