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Dys-regulated Metabolism and Cardiac Dysfunction in A Mouse Model of Cancer Cachexia.

机译:在恶病质恶病质的小鼠模型中,Dys调节的代谢和心脏功能障碍。

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摘要

Cancer cachexia is a syndrome of wasting of adipose tissue and skeletal muscle caused partly by chronic, systemic inflammation. Conjugated linoleic acids (CLA) are a group of dietary fatty acids that have anti-inflammatory properties, which are mainly attributed to the cis-9, trans-11 (c9t11-) CLA isomer. The first objective was to determine whether addition of a c9t11-CLA-rich oil (0.6% c9t11, 0.1% t10c12) in diet attenuate skeletal muscle wasting and adipose atrophy in a mouse model of cancer cachexia, male CD2F1 mice inoculated with 1 x 106 colon-26 adenocarcinoma (C26) cells. The loss of body weight, muscle and adipose tissue mass caused by tumors were not rescued by supplementation with 1% of the c9t11-CLA-rich oil. In quadriceps muscle, c9t11-CLA-rich oil exacerbated tumor-induced gene expression of inflammatory markers tumor necrosis factor alpha (TNF&agr;), interleukin (IL)-6 receptor and the E3 ligase muscle ring finger -1 (MuRF-1) involved in muscle proteolysis. In epididymal adipose tissue, tumor-driven delipidation and atrophy was aggravated by the c9,t11-CLA-rich oil, demonstrated by further reduced adipocyte size and lower adiponectin expression. These data suggest that addition of c9t11-CLA-rich oil in diet did not ameliorate wasting in mice with cancer cachexia. Instead, it increased expression of inflammatory markers in the muscle and increased adipose delipidation.;The second objective was to understand the effect of cancer cachexia on heart contractile function in the same mouse model. Earlier research has reported alterations in cardiac muscle metabolism in tumor-bearing animals and cancer patients, but it remains unclear whether cancer cachexia causes heart failure. Heart contractile function was measured by echocardiography in vivo on day 14 after tumor inoculation, and all mice were sacrificed on day 17 for other analysis. Mice from Tumor group had an impaired heart function compared to mice from No Tumor group. In hearts of Tumor mice compared to No Tumor group, there was marked fibrosis demonstrated by Masson's trichrome staining and transmission electron microscopy revealed disrupted myocardial ultrastructure. Gene expression of the regulator of cardiac muscle contraction troponin I was significantly reduced. Moreover, both mRNA and protein levels of myosin heavy chain (MHC) were altered whereby MHC&agr; (adult isoform) was decreased and MHCbeta (fetal isoform) was increased indicating reactivation of the fetal gene expression pattern. These data suggest diminished heart function in mice with cancer cachexia, and this impaired function was associated with increased fibrosis, disrupted myocardial structure and altered composition of contractile proteins of cardiac muscle.;The third objective was to investigate the underlying mechanisms for decreased heart function. In cachectic mice bearing C26 tumors compared to mice without tumors, there was an induced gene expression pattern for cardiac remodeling. Echocardiography identified a decreased cardiac wall thickness. RT-PCR and western blotting revealed a decreased amount of the major cardiac myofibrillar proteins MHC and troponin I, induced expression of atrogenes (MuRF-1 and Atrogin-1), and increased amount of ubiquitinated proteins. These data provide evidence for cardiac muscle atrophy through the ubiquitin-proteasome mediated proteolysis in mice with cancer cachexia. Regulatory signaling pathways might involve p44/42 MAPK and need to be confirmed in future research.
机译:癌症恶病质是一部分由慢性全身性炎症引起的脂肪组织和骨骼肌浪费的综合征。共轭亚油酸(CLA)是一组具有抗发炎特性的膳食脂肪酸,其主要归因于cis-9,trans-11(c9t11-)CLA异构体。第一个目标是确定是否在饮食中添加富含c9t11-CLA的油(0.6%c9t11,0.1%t10c12)可以减轻癌症恶病质小鼠模型中骨骼肌的浪费和脂肪萎缩,雄性CD2F1小鼠接种1 x 106结肠26腺癌(C26)细胞。补充1%富含c9t11-CLA的油无法挽救因肿瘤引起的体重,肌肉和脂肪组织损失。在股四头肌中,富含c9t11-CLA的油加剧了肿瘤诱导的炎症标志物肿瘤坏死因子α(TNF&agr;),白介素(IL)-6受体和E3连接酶肌肉无名指-1(MuRF-1)的基因表达。在肌肉蛋白水解中。在附睾脂肪组织中,富含c9,t11-CLA的油加剧了肿瘤驱动的脱脂和萎缩,进一步降低了脂肪细胞的大小并降低了脂联素的表达。这些数据表明,在饮食中添加富含c9t11-CLA的油不会改善患有恶病质的小鼠的浪费。相反,它增加了肌肉中炎性标志物的表达并增加了脂肪的血脂。;第二个目的是在同一小鼠模型中了解癌症恶病质对心脏收缩功能的影响。较早的研究报道了荷瘤动物和癌症患者心肌代谢的改变,但尚不清楚癌症恶病质是否会导致心力衰竭。在肿瘤接种后第14天通过体内超声心动图测量心脏收缩功能,并在第17天处死所有小鼠用于其他分析。与来自非肿瘤组的小鼠相比,来自肿瘤组的小鼠的心脏功能受损。与无肿瘤组相比,在肿瘤小鼠的心脏中,有明显的纤维化,这是由Masson的三色染色证实的,而透射电镜则显示出心肌超微结构的破坏。心肌收缩肌钙蛋白I调节因子的基因表达显着降低。此外,肌球蛋白重链(MHC)的mRNA和蛋白质水平均被改变,由此MHC&agr被改变。 (成人同工型)减少,MHCbeta(胎儿同工型)增加,表明胎儿基因表达模式重新激活。这些数据表明癌症恶病质小鼠的心脏功能减弱,这种功能受损与纤维化增加,心肌结构破坏和心肌收缩蛋白组成改变有关。第三个目的是研究降低心脏功能的潜在机制。与没有肿瘤的小鼠相比,在带有C26肿瘤的恶病质小鼠中,存在诱导的心脏重塑基因表达模式。超声心动图检查发现心脏壁厚度减少。 RT-PCR和蛋白质印迹显示减少的主要心肌肌原纤维蛋白MHC和肌钙蛋白I的量,诱导的atrogenes(MuRF-1和Atrogin-1)的表达,泛素化蛋白的量增加。这些数据为癌症恶病质小鼠通过遍在蛋白-蛋白酶体介导的蛋白水解提供了心肌萎缩的证据。调控信号通路可能涉及p44 / 42 MAPK,需要在未来的研究中得到证实。

著录项

  • 作者

    Tian, Min.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Health Sciences Nutrition.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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