Mesenchymal stromal cell-derived exosomes improve mitochondrial health in pulmonary arterial hypertension

被引:72
作者
Hogan, Sarah E. [1 ]
Salazar, Maria Pia Rodriguez [1 ]
Cheadle, John [1 ]
Glenn, Rachel [1 ]
Medrano, Carolina [1 ]
Petersen, Thomas H. [1 ]
Ragan, Roger M. [1 ]
机构
[1] United Therapeut Corp, Dept Regenerat Med, Durham, NC 27709 USA
关键词
exosome; glutamate dehydrogenase; glycolysis; hypertension; hypoxia; pulmonary; pyruvate dehydrogenase; sirtuin; 4; tricarboxylic acid cycle; STREPTOZOTOCIN-DIABETIC RATS; FAWN-HOODED RATS; PYRUVATE-DEHYDROGENASE; OXIDATIVE STRESS; METABOLIC SHIFT; MUSCLE; PREVENTS; PROLIFERATION; PHOSPHORYLATION; DYSFUNCTION;
D O I
10.1152/ajplung.00058.2018
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Secreted exosomes are bioactive particles that elicit profound responses in target cells. Using targeted metabolomics and global microarray analysis, we identified a role of exosomes in promoting mitochondrial function in the context of pulmonary arterial hypertension (PAH). Whereas chronic hypoxia results in a glycolytic shift in pulmonary artery smooth muscle cells (PASMCs), exosomes restore energy balance and improve O-2 consumption. These results were confirmed in a hypoxia-induced mouse model and a semaxanib/hypoxia rat model of PAH wherein exosomes improved the mitochondrial dysfunction associated with disease. Importantly, exosome exposure increased PASMC expression of pyruvate dehydrogenase (PDH) and glutamate dehydrogenase 1 (GLUD1), linking exosome treatment to the TCA cycle. Furthermore, we show that although prolonged hypoxia induced sirtuin 4 expression, an upstream inhibitor of both GLUD1 and PDH, exosomes reduced its expression. These data provide direct evidence of an exosome-mediated improvement in mitochondrial function and contribute new insights into the therapeutic potential of exosomes in PAH.
引用
收藏
页码:L723 / L737
页数:15
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