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Cardiac salvage by tweaking with beta-3-adrenergic receptors

机译:用β-3-肾上腺素能受体调整心脏挽救

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Overstimulation of the orthosympathetic system leads to cardiovascular cell and tissue damage through prolonged activation of β-1-2 adrenergic receptors (BARs). The more recent identification of the third isotype of BAR (B3AR) in cardiac myocytes and endothelial cells with a distinctive coupling and effect on cardiac function and remodelling introduced a new facet to this paradigm. In particular, B3AR is up-regulated in cardiac disease and less prone to homologous desensitization, which may reinforce its influence on the diseased myocardium. Mice with transgenic cardiac-specific expression of the human B3AR are protected from cardiac hypertrophy and fibrosis in response to neurohormonal stimulation. B3AR has also been implicated in cardiac protection after ischaemia-reperfusion and the benefits of exercise on the heart. Many of these salvage mechanisms are mediated by B3AR coupling to nitric oxide synthase (eNOS and nNOS) and downstream cGMP/protein kinase G signalling. Notably, B3AR exerts antioxidant protective effects on these and other signalling elements, which may subserve its protective properties in the setting of chronic heart failure. Additional vasorelaxing properties and paracrine NO-mediated signalling by B3AR in endothelium, together with systemic metabolic effects on beige/brown fat complete the pleiotropic protective properties of this new therapeutic target.
机译:对正交感神经系统的过度刺激通过延长β-1-2肾上腺素能受体(BAR)的激活而导致心血管细胞和组织损伤。最近在心肌细胞和内皮细胞中发现的第三种BAR(B3AR)亚型对心脏功能和重塑具有独特的耦合作用和影响,为这种模式引入了一个新的方面。尤其是,B3AR在心脏疾病中上调,不易发生同源脱敏,这可能会加强其对病变心肌的影响。在神经激素刺激下,具有人类B3AR转基因心脏特异性表达的小鼠可免受心肌肥厚和纤维化的影响。B3AR还与缺血再灌注后的心脏保护以及运动对心脏的益处有关。许多补救机制是通过B3AR与一氧化氮合酶(eNOS和nNOS)的偶联以及下游cGMP/蛋白激酶G信号传导介导的。值得注意的是,B3AR对这些和其他信号元素具有抗氧化保护作用,这可能在慢性心力衰竭的情况下维持其保护特性。内皮中B3AR的额外血管舒张特性和旁分泌NO介导的信号传导,以及对米色/棕色脂肪的全身代谢效应,完成了这一新治疗靶点的多效性保护特性。

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