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高血糖水平通过增加活性氧生成损害人类成熟骨髓脂肪细胞功能。

High Glucose Level Impairs Human Mature Bone Marrow Adipocyte Function Through Increased ROS Production.

作者信息

Rharass Tareck, Lucas Stéphanie

机构信息

University of Littoral Côte d'Opale, University of Lille, CHU Lille, EA4490-PMOI-Physiopathologie des Maladies Osseuses Inflammatoires, Boulogne-sur-Mer, France.

出版信息

Front Endocrinol (Lausanne). 2019 Sep 10;10:607. doi: 10.3389/fendo.2019.00607. eCollection 2019.

Abstract

Bone marrow adipocytes (BMAds) accumulate in aging, menopause, and metabolic diseases such as Type 2 diabetes. These osteoporotic conditions are associated with oxidative stress and hyperglycemia which are both considered as critical factors underlying bone fragility. Glucose excess and reactive oxygen species (ROS) are known to favor adipogenesis over osteoblastogenesis. In this study, we investigated whether high glucose exposure could determine dysfunction of mature BMAds, specifically through ROS production. The effects of low (LG, 5 mM) or high glucose (HG, 25 mM) concentrations were examined using human bone mesenchymal stromal cells (hBMSCs) in the time course of differentiation, and, up to 21 days once adipocytes were mature. HG did not alter the adipocyte differentiation process of hBMSCs. Yet, after 21 days under HG exposure, , and adiponectin mRNA expressions were decreased. These alterations were also observed following adipogenic inducer withdrawal as well as in adipocytes fully differentiated in LG then cultured in HG for the last 11 days. Without inducers, HG condition also led to decreased leptin mRNA level. Importantly, intracellular and extracellular ROS concentrations measured using Amplex Red were significantly raised by 50% under HG exposure. This rise was observed once adipocytes ended differentiation and was reproduced within the different cell culture settings without any cytotoxicity. Among genes involved in ROS metabolism, the mRNA level of the HO generating enzyme NOX4 was found upregulated in the presence of HG. Following cell separation, mature BMAds were shown to overproduce ROS and to display the gene alterations in contrast to non-lipid-laden cells. Finally, a non-lethal treatment with a pro-oxidant agent under LG condition reduces the mRNA levels of , adiponectin, and leptin as the HG condition does in the absence of inducers, and amplifies the effect of glucose excess on gene expression. HG concentration drives mature BMAds toward altered expression of the main adipokines and transcriptional factors. These perturbations are associated with a rise in ROS generation likely mediated through enhanced expression of . Mature BMAds are thus responsive to changes in glucose and ROS concentrations, which is relevant regarding with their phenotype and function in age- or metabolic disease-related osteoporosis.

摘要

骨髓脂肪细胞(BMAds)在衰老、绝经以及2型糖尿病等代谢性疾病中会蓄积。这些骨质疏松病症与氧化应激和高血糖相关,而这两者均被视为导致骨脆性的关键因素。已知葡萄糖过量和活性氧(ROS)会促进脂肪生成而非成骨细胞生成。在本研究中,我们调查了高糖暴露是否会通过产生ROS来导致成熟BMAds功能障碍。在人骨髓间充质基质细胞(hBMSCs)分化的时间进程中以及脂肪细胞成熟后长达21天的时间里,检测了低(LG,5 mM)或高糖(HG,25 mM)浓度的影响。HG并未改变hBMSCs的脂肪细胞分化过程。然而,在HG暴露21天后,脂联素mRNA表达降低。在撤除脂肪生成诱导剂后以及在LG中完全分化然后在HG中培养最后11天的脂肪细胞中也观察到了这些改变。在无诱导剂的情况下,HG条件也导致瘦素mRNA水平降低。重要的是,使用Amplex Red测量的细胞内和细胞外ROS浓度在HG暴露下显著升高了50%。这种升高在脂肪细胞结束分化后即可观察到,并且在不同的细胞培养条件下均可重现,且无任何细胞毒性。在参与ROS代谢的基因中,发现HO生成酶NOX4的mRNA水平在HG存在时上调。细胞分离后,成熟的BMAds显示出过量产生ROS并呈现出与非脂质负载细胞相比的基因改变。最后,在LG条件下用促氧化剂进行非致死性处理会降低脂联素和瘦素的mRNA水平,就像在无诱导剂的情况下HG条件所导致的那样,并且会放大葡萄糖过量对基因表达的影响。HG浓度促使成熟的BMAds朝着主要脂肪因子和转录因子的表达改变发展。这些扰动与可能通过增强的表达介导的ROS生成增加有关。因此,成熟的BMAds对葡萄糖和ROS浓度的变化有反应,这与其在年龄或代谢疾病相关骨质疏松症中的表型和功能相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f62/6746912/00b8c6b3c55f/fendo-10-00607-g0001.jpg

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