首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Activation of the cardiac ciliary neurotrophic factor receptor reverses left ventricular hypertrophy in leptin-deficient and leptin-resistant obesity
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Activation of the cardiac ciliary neurotrophic factor receptor reverses left ventricular hypertrophy in leptin-deficient and leptin-resistant obesity

机译:瘦素缺乏和瘦素抵抗性肥胖症患者心脏睫状神经营养因子受体的激活逆转了左心室肥大

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摘要

Disruption of the leptin signaling pathway within the heart causes left ventricular hypertrophy (LVH). Because human obesity is a syndrome of leptin resistance, which is not amenable to leptin treatment, the identification of parallel signal transduction pathways is of potential therapeutic value. Ciliary neurotrophic factor (CNTF), which acts parallel to leptin in the hypothalamus, is not previously recognized to have cardiac activity. We hypothesized that CNTF receptors are present on cardiomyocytes and their activation reverses LVH in both leptin-deficient ob/ob and leptin-resistant db/db mice. The localization of CNTF receptors (CNTFRα) to the sarcolemma in C57BL/6, ob/ob and db/db was confirmed in situ with immunohistochemistry, and immunoblotting (60 and 40 kDa) on isolated myocytes. ob/ob mice were randomly assigned to receive s.c. recombinant CNTF (CNTFAx15; 0.1 mg·kg−1 per day; n = 11) calorie-restriction (n = 9), or feeding ad libitum (n = 11). db/db mice were allocated to three similar groups (n = 8, 7, and 8, respectively) plus a leptin group (1 mg·kg−1 per day; n = 7). Echocardiography showed that CNTFAx15 reduced cardiac hypertrophy [posterior wall thickness decreased by 29 ± 8% (P < 0.01) in ob/ob and by 21 ± 3% in db/db mice (P < 0.01)], which was consistent with the reduction of myocyte width. Western blotting showed that leptin and CNTFAx15 activated Stat3 and ERK1/2 pathway in cultured adult mice cardiomyocytes and cardiac tissue from in ob/ob and db/db mice. Together, these findings support the role of a previously undescribed signaling pathway in obesity-associated cardiac hypertrophy and have therapeutic implications for patients with obesity-related cardiovascular disease and other causes of LVH.
机译:心脏内瘦素信号传导途径的破坏导致左心室肥大(LVH)。由于人类肥胖是瘦素抵抗的综合症,不适用于瘦素治疗,因此平行信号转导途径的鉴定具有潜在的治疗价值。与下丘脑中的瘦素平行起作用的睫状神经营养因子(CNTF)先前未被认为具有心脏活性。我们假设CNTF受体存在于心肌细胞上,并且它们的激活在瘦素缺陷型ob / ob和瘦素抵抗型db / db小鼠中逆转LVH。 CNTF受体(CNTFRα)定位于C57BL / 6,ob / ob和db / db中的肌膜,通过免疫组织化学原位证实,并在分离的心肌细胞上进行了免疫印迹(60和40 kDa)。 ob / ob小鼠被随机分配接受s.c.重组CNTF(CNTFAx15;每天0.1 mg·kg -1 ; n = 11),限制热量(n = 9),或随意喂养(n = 11)。将db / db小鼠分为三个相似的组(分别为n = 8、7和8)和瘦素组(每天1 mg·kg -1 ; n = 7)。超声心动图显示CNTFAx15减少了心肌肥大[ob / ob的后壁厚度降低了29±8%(P <0.01),db / db的小鼠后壁厚度降低了21±3%(P <0.01)],这与降低的趋势是一致的肌细胞宽度。蛋白质印迹表明,瘦素和CNTFAx15激活了成年小鼠心肌细胞和 ob / ob db / db 小鼠心脏组织中的Stat3和ERK1 / 2途径。总之,这些发现支持了先前未描述的信号传导途径在肥胖相关的心脏肥大中的作用,并且对肥胖相关的心血管疾病和其他LVH病因具有治疗意义。

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