Payet Thomas, Astier Julien, Bournot Lorrine, Sicard Flavie, Robert Stéphane, Lacroix Romaric, Wabitsch Martin, Landrier Jean-François, Mounien Lourdes
Aix Marseille University, INSERM, INRAE, C2VN, Marseille, France.
Biomeostasis CRO, Nutritional Behavior and Metabolic Disorders, La Penne-sur-Huveaune, France.
Biofactors. 2025 Jan-Feb;51(1):e70003. doi: 10.1002/biof.70003.
Inflammation of adipose tissue is a contributing factor to many chronic diseases associated with obesity. We previously showed that micronutrients such as vitamin D (VD) limited this metabolic inflammation by decreasing inflammatory markers expression including miR-155 (microRNA-155) or miR-146a in different in vitro and in vivo models. These miRNAs could be incorporated into extracellular vesicles (EVs) in order to modulate the activity of target cells. Nevertheless, the role of VD on the miRNAs contained in EVs from adipose tissue in inflammatory conditions remains unclear. In this study, we used a human model of SGBS (Simpson-Golabi-Behmel syndrome) adipocytes preincubated with 1,25(OH)D (the active form of VD) before an inflammatory stress with tumor necrosis factor α (TNFα). First, we confirmed by quantitative PCR that the expression of classical inflammatory factors (TNFα and chemokine ligand 2 [CCL2/MCP1]), miR-146a, and miR-155 was increased significantly under inflammatory conditions in SGBS cells and that VD prevented this up-regulation. Secondly, transmission electron microscope imaging of EVs preparations in supernatant allowed visualization of small and large vesicles under these conditions. Then, EVs were obtained with isolation kit and the expression of miR-155 and miR-146a were measured. The expression of miR-155 under TNFα effect was increased in EVs while miR-146a was not detected. Moreover, we also showed that the TNFα-mediated expression of miR-155 in EVs was significantly reduced by a VD pre-incubation of cells. Using miRNA PCR array, we also identified 33 miRNAs, organized in 5 clusters that were differentially regulated by TNFα and VD. Bioinformatic analysis of biological pathways revealed that the different miRNAs targeting genes that are involved in important cell process such as the regulation of transcription or protein phosphorylation. In conclusion, these results support for the first time that VD modulated the expression of miRNAs in EVs from adipocytes, which could represent a new mechanism of regulation of inflammation by micronutrients.
脂肪组织炎症是许多与肥胖相关的慢性疾病的一个促成因素。我们之前表明,维生素D(VD)等微量营养素通过在不同的体外和体内模型中降低包括miR-155(微小RNA-155)或miR-146a在内的炎症标志物表达,限制了这种代谢性炎症。这些微小RNA可以被整合到细胞外囊泡(EVs)中,以调节靶细胞的活性。然而,在炎症条件下,VD对来自脂肪组织的细胞外囊泡中所含微小RNA的作用仍不清楚。在本研究中,我们使用了一种人类SGBS(辛普森-戈拉比-贝梅尔综合征)脂肪细胞模型,在肿瘤坏死因子α(TNFα)引发炎症应激之前,先用1,25(OH)D(VD的活性形式)进行预孵育。首先,我们通过定量PCR证实,在炎症条件下,SGBS细胞中经典炎症因子(TNFα和趋化因子配体2 [CCL2/MCP1])、miR-146a和miR-155的表达显著增加,而VD可阻止这种上调。其次,通过对上清液中细胞外囊泡制剂进行透射电子显微镜成像,可以在这些条件下观察到大小不同的囊泡。然后,使用分离试剂盒获得细胞外囊泡,并检测miR-155和miR-146a的表达。在细胞外囊泡中,TNFα作用下miR-155的表达增加,而未检测到miR-146a。此外,我们还表明,细胞预先用VD孵育可显著降低TNFα介导的细胞外囊泡中miR-155的表达。使用微小RNA PCR阵列,我们还鉴定出3个33微小RNA,它们被组织成5个簇,受TNFα和VD的差异调节。对生物途径的生物信息学分析表明,不同的微小RNA靶向参与重要细胞过程(如转录调控或蛋白质磷酸化)的基因。总之,这些结果首次支持VD可调节脂肪细胞来源的细胞外囊泡中微小RNA的表达,这可能代表了微量营养素调节炎症的一种新机制。