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Characterisation of adipocyte-derived extracellular vesicle subtypes identifies distinct protein and lipid signatures for large and small extracellular vesicles

机译:脂肪细胞源性细胞外囊泡亚型的表征可识别大大小小的细胞外囊泡的独特蛋白质和脂质特征

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摘要

Extracellular vesicles (EVs) are biological vectors that can modulate the metabolism of target cells by conveying signalling proteins and genomic material. The level of EVs in plasma is significantly increased in cardiometabolic diseases associated with obesity, suggesting their possible participation in the development of metabolic dysfunction. With regard to the poor definition of adipocyte-derived EVs, the purpose of this study was to characterise both qualitatively and quantitatively EVs subpopulations secreted by fat cells. Adipocyte-derived EVs were isolated by differential centrifugation of conditioned media collected from 3T3-L1 adipocytes cultured for 24 h in serum-free conditions. Based on morphological and biochemical properties, as well as quantification of secreted EVs, we distinguished two subpopulations of adipocyte-derived EVs, namely small extracellular vesicles (sEVs) and large extracellular vesicles (lEVs). Proteomic analyses revealed that lEVs and sEVs exhibit specific protein signatures, allowing us not only to define novel markers of each population, but also to predict their biological functions. Despite similar phospholipid patterns, the comparative lipidomic analysis performed on these EV subclasses revealed a specific cholesterol enrichment of the sEV population, whereas lEVs were characterised by high amounts of externalised phosphatidylserine. Enhanced secretion of lEVs and sEVs is achievable following exposure to different biological stimuli related to the chronic low-grade inflammation state associated with obesity. Finally, we demonstrate the ability of primary murine adipocytes to secrete sEVs and lEVs, which display physical and biological characteristics similar to those described for 3T3-L1. Our study provides additional information and elements to define EV subtypes based on the characterisation of adipocyte-derived EV populations. It also underscores the need to distinguish EV subpopulations, through a combination of multiple approaches and markers, since their specific composition may cause distinct metabolic responses in recipient cells and tissues.
机译:细胞外囊泡(EVs)是生物载体,可以通过传递信号蛋白和基因组物质来调节靶细胞的代谢。在与肥胖有关的心脏代谢疾病中,血浆中的EV水平显着增加,表明它们可能参与了代谢功能障碍的发展。关于脂肪细胞源电动汽车的定义不明确,本研究的目的是定性和定量分析脂肪细胞分泌的电动汽车亚群。通过差异离心从无血清条件下培养24小时的3T3-L1脂肪细胞收集的条件培养基中分离脂肪细胞衍生的EV。基于形态和生化特性,以及对分泌的电动汽车的定量,我们区分了两个脂肪细胞衍生的电动汽车亚群,即小细胞外囊泡(sEVs)和大细胞外囊泡(lEVs)。蛋白质组学分析显示,lEV和sEV具有特定的蛋白质特征,不仅使我们能够定义每个群体的新标记,而且能够预测其生物学功能。尽管有相似的磷脂模式,但对这些EV亚类进行的比较脂质组学分析显示sEV群体具有特定的胆固醇富集,而lEV的特征是大量外在化的磷脂酰丝氨酸。暴露于与肥胖相关的慢性低度炎症状态相关的不同生物刺激后,即可提高lEV和sEV的分泌。最后,我们证明了原代鼠脂肪细胞分泌sEV和lEV的能力,它们显示出与3T3-L1类似的物理和生物学特征。我们的研究基于脂肪细胞衍生的EV群体的特征,提供了更多信息和元素来定义EV亚型。它还强调需要通过多种方法和标记的组合来区分EV亚群,因为它们的特定组成可能在受体细胞和组织中引起不同的代谢反应。

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