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人类自身免疫性疾病的免疫代谢:从代谢物到细胞外囊泡

Immunometabolism of human autoimmune diseases: from metabolites to extracellular vesicles.

作者信息

de Candia Paola, De Rosa Veronica, Gigantino Vincenzo, Botti Gerardo, Ceriello Antonio, Matarese Giuseppe

机构信息

IRCCS MultiMedica, Milan, Italy.

Laboratorio di Immunologia, Istituto di Endocrinologia e Oncologia Sperimentale, Consiglio Nazionale delle Ricerche (IEOS-CNR), Naples, Italy.

出版信息

FEBS Lett. 2017 Oct;591(19):3119-3134. doi: 10.1002/1873-3468.12733. Epub 2017 Jul 10.

Abstract

Immunometabolism focuses on the mechanisms regulating the impact of metabolism on lymphocyte activity and autoimmunity outbreak. The adipose tissue is long known to release adipokines, either pro- or anti-inflammatory factors bridging nutrition and immune function. More recently, adipocytes were discovered to also release extracellular vesicles (EVs) containing a plethora of biological molecules, including metabolites and microRNAs, which can regulate cell function/metabolism in distant tissues, suggesting that immune regulatory function by the adipose tissue may be far more complex than originally thought. Moreover, EVs were also identified as important mediators of immune cell-to-cell communication, adding a further microenvironmental mechanism of plasticity to fine-tune specific lymphocyte responses. This Review will first focus on the known mechanisms by which metabolism impacts immune function, presenting a systemic (nutrition and long-ranged adipokines) and a cellular point of view (metabolic pathway derangement in autoimmunity). It will then discuss the new discoveries concerning how EVs may act as nanometric vehicles integrating immune/metabolic responses at the level of the extracellular environment and affecting pathological processes.

摘要

免疫代谢聚焦于调节代谢对淋巴细胞活性和自身免疫爆发影响的机制。长期以来,人们已知脂肪组织会释放脂肪因子,即连接营养与免疫功能的促炎或抗炎因子。最近,人们发现脂肪细胞还会释放包含大量生物分子(包括代谢物和微小RNA)的细胞外囊泡(EVs),这些生物分子可调节远处组织的细胞功能/代谢,这表明脂肪组织的免疫调节功能可能比最初认为的要复杂得多。此外,EVs也被确定为免疫细胞间通讯的重要介质,为微调特定淋巴细胞反应增添了另一种可塑性微环境机制。本综述首先将聚焦于代谢影响免疫功能的已知机制,从系统层面(营养和远距离脂肪因子)和细胞层面(自身免疫中的代谢途径紊乱)进行阐述。然后将讨论有关EVs如何作为纳米载体在细胞外环境水平整合免疫/代谢反应并影响病理过程的新发现。

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