CD36, cluster of differentiation 36

CD36 , 分化簇 36
  • 文章类型: Journal Article
    高脂血症引起的心血管疾病和代谢并发症是全球死亡的主要原因。在这项研究中,研究了芝麻(SI)种子的降血脂能力。在研究中使用的三十五(35)只雄性大鼠中,在随机分配到三(3)组之前,随机选择五(5)例进行基线测量,三十(30)例喂食高脂饮食(HFD)四(4)周。实验组用50%SI种子处理,阳性对照组给予降血脂药物,阿托伐他汀(5mg/kg/天),而未处理组用作阴性对照。有了SI管理,血浆和所研究的身体器官中HFD消耗引起的血脂异常的逆转程度与阿托伐他汀治疗相当。一起来看,这项研究证明了SI在改善高脂血症及其相关并发症方面的降血脂功效,通过抑制HMG-CoA还原酶活性促进。
    Cardiovascular diseases and metabolic complications caused by hyperlipidemia are the leading cause of death globally. In this study, the hypolipidemic potency of Sesamum indicum (SI) seeds was investigated. Of the thirty-five (35) male rats used in the study, five (5) were randomly selected for baseline measurements and thirty (30) were fed high fat diet (HFD) for four (4) weeks before random assignment into three (3) groups. The experimental group was treated with 50% SI seed, the positive control group was given a hypolipidemic drug, atorvastatin (5 mg/kg/day) while the untreated group served as the negative control. With SI administration, the dyslipidemia induced by the HFD consumption in the plasma and the investigated body organs was reversed to a comparable degree with that of atorvastatin treatment. Taken together, this study demonstrates the hypolipidemic potency of SI in ameliorating hyperlipidemia and its associated complications, facilitated by the inhibition of HMG-CoA reductase activity.
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  • 文章类型: Journal Article
    二恶英样分子与内分泌干扰和肝脏疾病有关。为了更好地理解芳烃受体(AHR)生物学,在该受体的配体激活或全身遗传消融后,对小鼠进行了代谢表型分析和肝脏蛋白质组学.雄性野生型(WT)和Ahr-/-小鼠(Taconic)饲喂对照饮食并暴露于3,3',4,4\',5-五氯联苯(PCB126)(61nmol/kg,通过管饲法)或媒介物,持续两周。PCB126增加了WT中经典AHR靶标(Cyp1a1和Cyp1a2)的表达,但不增加Ahr-/-。敲除后肥胖增加,糖耐量降低;肝脏变小,脂肪变性和perilipin-2增加;矛盾的是血脂降低。PCB126与Ahr-/-中的肝甘油三酯增加有关。Ahr-/-基因型对肝脏蛋白质组的影响比配体激活更大,但顶级基因本体论(GO)过程相似。PCB126相关的肝脏蛋白质组是Ahr依赖性的。Ahr主要调节肝脏代谢(例如,脂质,外源性物质,有机酸)和生物能学,但它也会影响肝脏内分泌反应(例如,胰岛素受体)和功能,包括生产类固醇,肝细胞因子,和信息素结合蛋白。这些作用可能是通过相互作用转录因子或microRNA间接介导的。AHR及其配体的生物学作用需要在肝脏代谢健康和疾病方面进行更多的研究。
    Dioxin-like molecules have been associated with endocrine disruption and liver disease. To better understand aryl hydrocarbon receptor (AHR) biology, metabolic phenotyping and liver proteomics were performed in mice following ligand-activation or whole-body genetic ablation of this receptor. Male wild type (WT) and Ahr -/- mice (Taconic) were fed a control diet and exposed to 3,3\',4,4\',5-pentachlorobiphenyl (PCB126) (61 nmol/kg by gavage) or vehicle for two weeks. PCB126 increased expression of canonical AHR targets (Cyp1a1 and Cyp1a2) in WT but not Ahr -/-. Knockouts had increased adiposity with decreased glucose tolerance; smaller livers with increased steatosis and perilipin-2; and paradoxically decreased blood lipids. PCB126 was associated with increased hepatic triglycerides in Ahr -/-. The liver proteome was impacted more so by Ahr -/- genotype than ligand-activation, but top gene ontology (GO) processes were similar. The PCB126-associated liver proteome was Ahr-dependent. Ahr principally regulated liver metabolism (e.g., lipids, xenobiotics, organic acids) and bioenergetics, but it also impacted liver endocrine response (e.g., the insulin receptor) and function, including the production of steroids, hepatokines, and pheromone binding proteins. These effects could have been indirectly mediated by interacting transcription factors or microRNAs. The biologic roles of the AHR and its ligands warrant more research in liver metabolic health and disease.
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  • 文章类型: Journal Article
    目的:非酒精性脂肪性肝炎(NASH)与氧化应激有关。我们推测,使用炔属三环双(氰基烯酮)TBE-31的NF-E2p45相关因子2(Nrf2)的药理激活会抑制NASH,因为Nrf2是细胞内氧化还原稳态的转录主调节因子。
    方法:Nrf2+/+和Nrf2-/-C57BL/6小鼠饲喂高脂肪加果糖(HFFr)或常规饮食16周或30周,然后治疗最后6周,虽然仍然喂相同的HFFr或常规饮食,与TBE-31或二甲基亚砜载体控制。全身葡萄糖稳态的测量,肝脏的组织学评估,以及脂肪变性的生化和分子测量,内质网(ER)应激,炎症,凋亡,纤维化,氧化应激在这些动物的肝脏中进行。
    结果:TBE-31治疗逆转HFFr饲喂野生型小鼠的胰岛素抵抗,但不是在HFFr喂养的Nrf2-null小鼠中。TBE-31治疗HFFr喂养的野生型小鼠显著降低肝脏脂肪变性和脂质合成基因的表达,同时增加肝脏脂肪酸氧化和脂蛋白组装基因的表达。此外,TBE-31治疗减少内质网应激,炎症基因的表达,和细胞凋亡的标志物,纤维化,HFFr喂养的野生型小鼠肝脏中的氧化应激。相比之下,TBE-31不能减少脂肪变性,ER压力,脂肪生成,炎症,纤维化,或HFFr喂养的Nrf2-null小鼠肝脏中的氧化应激。
    结论:Nrf2在已经出现肥胖和胰岛素抵抗的小鼠中的药理激活逆转了胰岛素抵抗,抑制肝脏脂肪变性,并缓解NASH和肝纤维化,我们主要归因于抑制ER的影响,炎症,和氧化应激。
    OBJECTIVE: Nonalcoholic steatohepatitis (NASH) is associated with oxidative stress. We surmised that pharmacologic activation of NF-E2 p45-related factor 2 (Nrf2) using the acetylenic tricyclic bis(cyano enone) TBE-31 would suppress NASH because Nrf2 is a transcriptional master regulator of intracellular redox homeostasis.
    METHODS: Nrf2+/+ and Nrf2-/- C57BL/6 mice were fed a high-fat plus fructose (HFFr) or regular chow diet for 16 weeks or 30 weeks, and then treated for the final 6 weeks, while still being fed the same HFFr or regular chow diets, with either TBE-31 or dimethyl sulfoxide vehicle control. Measures of whole-body glucose homeostasis, histologic assessment of liver, and biochemical and molecular measurements of steatosis, endoplasmic reticulum (ER) stress, inflammation, apoptosis, fibrosis, and oxidative stress were performed in livers from these animals.
    RESULTS: TBE-31 treatment reversed insulin resistance in HFFr-fed wild-type mice, but not in HFFr-fed Nrf2-null mice. TBE-31 treatment of HFFr-fed wild-type mice substantially decreased liver steatosis and expression of lipid synthesis genes, while increasing hepatic expression of fatty acid oxidation and lipoprotein assembly genes. Also, TBE-31 treatment decreased ER stress, expression of inflammation genes, and markers of apoptosis, fibrosis, and oxidative stress in the livers of HFFr-fed wild-type mice. By comparison, TBE-31 did not decrease steatosis, ER stress, lipogenesis, inflammation, fibrosis, or oxidative stress in livers of HFFr-fed Nrf2-null mice.
    CONCLUSIONS: Pharmacologic activation of Nrf2 in mice that had already been rendered obese and insulin resistant reversed insulin resistance, suppressed hepatic steatosis, and mitigated against NASH and liver fibrosis, effects that we principally attribute to inhibition of ER, inflammatory, and oxidative stress.
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  • 文章类型: Journal Article
    The aim of the present study was to scrutinise the influence of maternal high-fat diet (mHFD) consumption during gestation and lactation on exercise performance and energy metabolism in male mouse offspring. Female C3H/HeJ mice were fed either a semi-synthetic high-fat diet (HFD; 40 % energy from fat) or a low-fat diet (LFD; 10 % energy from fat) throughout gestation and lactation. After weaning, male offspring of both groups received the LFD. At the age of 7·5 weeks half of the maternal LFD (n 20) and the mHFD (n 21) groups were given access to a running wheel for 28 d as a voluntary exercise training opportunity. We show that mHFD consumption led to a significantly reduced exercise performance (P < 0·05) and training efficiency (P < 0·05) in male offspring. There were no effects of maternal diet on offspring body weight. Lipid and glucose metabolism was disturbed in mHFD offspring, with altered regulation of cluster of differentiation 36 (CD36) (P < 0·001), fatty acid synthase (P < 0·05) and GLUT1 (P < 0·05) gene expression in skeletal muscle. In conclusion, maternal consumption of a HFD is linked to decreased exercise performance and training efficiency in the offspring. We speculate that this may be due to insufficient muscle energy supply during prolonged exercise training. Further, this compromised exercise performance might increase the risk of obesity development in adult life.
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  • 文章类型: Journal Article
    Atherosclerosis and its complications are major causes of death all over the world. One of the major risks of atherosclerosis is hypercholesterolemia. During atherosclerosis, oxidized low density lipoprotein (oxLDL) regulates CD36-mediated activation of c-jun amino terminal kinase-1 (JNK1) and modulates matrix metalloproteinase (MMP) induction which stimulates inflammation with an invasion of monocytes. Additionally, inhibition of proteasome leads to an accumulation of c-jun and phosphorylated c-jun and activation of activator protein-1 (AP-1) related increase of MMP expression. We have previously reported a significant increase in cluster of differentiation 36 (CD36) mRNA levels in hypercholesterolemic rabbits and shown that vitamin E treatment prevented the cholesterol induced increase in CD36 mRNA expression. In the present study, our aim is to identify the signaling molecules/transcription factors involved in the progression of atherosclerosis following CD36 activation in an in vivo model of hypercholesterolemic (induced by 2% cholesterol containing diet) rabbits. In this direction, proteasomal activities by fluorometry and c-jun, phospo c-jun, JNK1, MMP-9 expressions by quantitative RT-PCR and immunoblotting were tested in aortic tissues. The effects of vitamin E on these changes were also investigated in this model. As a result, c-jun was phosphorylated following decreased proteasomal degradation in hypercholesterolemic group. MMP-9 expression was also increased in cholesterol group rabbits contributing to the development of atherosclerosis. In addition, vitamin E showed its effect by decreasing MMP-9 levels and phosphorylation of c-jun.
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