Li Qinghong
Nestlé Purina Research, Saint Louis, MO, United States.
Front Vet Sci. 2022 Feb 15;9:791754. doi: 10.3389/fvets.2022.791754. eCollection 2022.
This review provides a state-of-the-art overview on recent advances in systems biology in canine cardiac disease, with a focus on our current understanding of bioenergetics and amino acid metabolism in myxomatous mitral valve disease (MMVD). Cross-species comparison is drawn to highlight the similarities between human and canine heart diseases. The adult mammalian heart exhibits a remarkable metabolic flexibility and shifts its energy substrate preference according to different physiological and pathological conditions. The failing heart suffers up to 40% ATP deficit and is compared to an engine running out of fuel. Bioenergetics and metabolic readaptations are among the major research topics in cardiac research today. Myocardial energy metabolism consists of three interconnected components: substrate utilization, oxidative phosphorylation, and ATP transport and utilization. Any disruption or uncoupling of these processes can result in deranged energy metabolism leading to heart failure (HF). The review describes the changes occurring in each of the three components of energy metabolism in MMVD and HF. It also provides an overview on the changes in circulating and myocardial glutathione, taurine, carnitines, branched-chain amino acid catabolism and tryptophan metabolic pathways. In addition, the review summarizes the potential role of the gut microbiome in MMVD and HF. As our knowledge and understanding in these molecular and metabolic processes increase, it becomes possible to use nutrition to address these changes and to slow the progression of the common heart diseases in dogs.
本综述提供了犬类心脏疾病系统生物学最新进展的前沿概述,重点关注我们目前对黏液瘤性二尖瓣疾病(MMVD)中生物能量学和氨基酸代谢的理解。通过跨物种比较来突出人类和犬类心脏病之间的相似性。成年哺乳动物心脏表现出显著的代谢灵活性,并根据不同的生理和病理状况改变其能量底物偏好。衰竭的心脏会出现高达40%的ATP缺乏,可类比为一台耗尽燃料的发动机。生物能量学和代谢再适应是当今心脏研究的主要研究课题。心肌能量代谢由三个相互关联的部分组成:底物利用、氧化磷酸化以及ATP的转运和利用。这些过程中的任何干扰或解偶联都可能导致能量代谢紊乱,进而引发心力衰竭(HF)。本综述描述了MMVD和HF中能量代谢三个组成部分各自发生的变化。它还概述了循环和心肌中谷胱甘肽、牛磺酸、肉碱、支链氨基酸分解代谢和色氨酸代谢途径的变化。此外,本综述总结了肠道微生物群在MMVD和HF中的潜在作用。随着我们对这些分子和代谢过程的认识和理解不断增加,利用营养来应对这些变化并减缓犬类常见心脏病的进展成为可能。