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Metabolism in Pulmonary Hypertension
Annual Review of Physiology ( IF 15.7 ) Pub Date : 2021-02-10 , DOI: 10.1146/annurev-physiol-031620-123956
Weiling Xu 1 , Allison J Janocha 1 , Serpil C Erzurum 1, 2
Affiliation  

Pulmonary arterial hypertension (PAH) is characterized by impaired regulation of pulmonary hemodynamics and vascular growth. Alterations of metabolism and bioenergetics are increasingly recognized as universal hallmarks of PAH, as metabolic abnormalities are identified in lungs and hearts of patients, animal models of the disease, and cells derived from lungs of patients. Mitochondria are the primary organelle critically mediating the complex and integrative metabolic pathways in bioenergetics, biosynthetic pathways, and cell signaling. Here, we review the alterations in metabolic pathways that are linked to the pathologic vascular phenotype of PAH, including abnormalities in glycolysis and glucose oxidation, fatty acid oxidation, glutaminolysis, arginine metabolism, one-carbon metabolism, the reducing and oxidizing cell environment, and the tricarboxylic acid cycle, as well as the effects of PAH-associated nuclear and mitochondrial mutations on metabolism. Understanding of the metabolic mechanisms underlying PAH provides important knowledge for the design of new therapeutics for treatment of patients.

中文翻译:


肺动脉高压的代谢

肺动脉高压 (PAH) 的特征是肺血流动力学和血管生长的调节受损。代谢和生物能量学的改变越来越被认为是 PAH 的普遍标志,因为在患者的肺和心脏、疾病的动物模型以及来自患者肺的细胞中发现了代谢异常。线粒体是主要的细胞器,在生物能量学、生物合成途径和细胞信号传导中关键地介导复杂和整合的代谢途径。在这里,我们回顾了与 PAH 病理性血管表型相关的代谢途径的改变,包括糖酵解和葡萄糖氧化异常、脂肪酸氧化、谷氨酰胺分解、精氨酸代谢、单碳代谢、还原和氧化细胞环境,和三羧酸循环,以及 PAH 相关的核和线粒体突变对代谢的影响。了解 PAH 的代谢机制为设计治疗患者的新疗法提供了重要知识。

更新日期:2021-02-11
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