Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK.
Gubra A/S, Hørsholm Kongevej 11B, 2970, Hørsholm, Denmark.
Sci Rep. 2024 Aug 21;14(1):19383. doi: 10.1038/s41598-024-70335-4.
The diabetic heart is characterised by functional, morphological and metabolic alterations predisposing it to contractile failure. Chronic sympathetic activation is a feature of the pathogenesis of heart failure, however the type 1 diabetic heart shows desensitisation to β-adrenergic stimulation. Here, we sought to understand the impact of repeated isoprenaline-mediated β-stimulation upon cardiac mitochondrial respiratory capacity and substrate metabolism in the 90% pancreatectomy (Px) rat model of type 1 diabetes. We hypothesised these hearts would be relatively protected against the metabolic impact of stress-induced cardiomyopathy. We found that individually both Px and isoprenaline suppressed cardiac mitochondrial respiration, but that this was preserved in Px rats receiving isoprenaline. Px and isoprenaline had contrasting effects on cardiac substrate metabolism, with increased reliance upon cardiac fatty acid oxidation capacity and altered ketone metabolism in the hearts of Px rats, but enhanced capacity for glucose uptake and metabolism in isoprenaline-treated rats. Moreover, Px rats were protected against isoprenaline-induced mortality, whilst isoprenaline elevated cGMP and protected myocardial energetic status in Px rat hearts. Our work suggests that adrenergic stimulation may be protective in the type 1 diabetic heart, and underlines the importance of studying pathological features in combination when modeling complex disease in rodents.
糖尿病心脏的特征是功能、形态和代谢改变,使其容易发生收缩功能衰竭。慢性交感神经激活是心力衰竭发病机制的一个特征,但 1 型糖尿病心脏对β-肾上腺素能刺激表现出脱敏。在这里,我们试图了解在 90%胰切除术 (Px) 大鼠 1 型糖尿病模型中,反复异丙肾上腺素介导的β-刺激对心脏线粒体呼吸能力和底物代谢的影响。我们假设这些心脏将相对免受应激性心肌病代谢影响的保护。我们发现,单独的 Px 和异丙肾上腺素都抑制了心脏线粒体呼吸,但在接受异丙肾上腺素的 Px 大鼠中这种抑制得到了保留。Px 和异丙肾上腺素对心脏底物代谢有相反的影响,在 Px 大鼠的心脏中增加了对心脏脂肪酸氧化能力的依赖,并改变了酮代谢,但在异丙肾上腺素处理的大鼠中增强了葡萄糖摄取和代谢的能力。此外,Px 大鼠对异丙肾上腺素诱导的死亡率有保护作用,而异丙肾上腺素升高了 cGMP 并保护了 Px 大鼠心脏的心肌能量状态。我们的工作表明,肾上腺素刺激可能对 1 型糖尿病心脏具有保护作用,并强调了在建模复杂疾病时结合研究病理特征的重要性。