Mesenchymal stromal cell-derived exosomes improve mitochondrial health in pulmonary arterial hypertension
Author(s) -
Sarah Hogan,
Maria Pia Rodriguez Salazar,
John B. Cheadle,
Rachel A. Glenn,
Carolina Medrano,
Thomas Petersen,
Roger M. Ilagan
Publication year - 2019
Publication title -
american journal of physiology-lung cellular and molecular physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.892
H-Index - 163
eISSN - 1522-1504
pISSN - 1040-0605
DOI - 10.1152/ajplung.00058.2018
Subject(s) - microvesicles , hypoxia (environmental) , microbiology and biotechnology , mesenchymal stem cell , pulmonary hypertension , exosome , stromal cell , biology , cancer research , chemistry , medicine , microrna , biochemistry , gene , oxygen , organic chemistry
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.
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