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Peripheral modulation of antidepressant targets MAO-B and GABAAR by harmol induces mitohormesis and delays aging in preclinical models

Luis Filipe Costa‐Machado, Esther García-Domínguez, Rebecca L. McIntyre, José Luis López-Aceituno, Álvaro Ballesteros-Gonzalez, Andrea Tapia-Gonzalez, David Fabregat‐Safont, Tobias Eisenberg, Jesús Gómez, Adrián Plaza, Aranzazu Sierra-Ramirez, Manuel Pérez‐Martínez, David Villanueva-Bermejo, Tiziana Fornari, Marı́a Isabel Loza

Nature Communications · 2023 · ▲ 41 citations

Abstract

Reversible and sub-lethal stresses to the mitochondria elicit a program of compensatory responses that ultimately improve mitochondrial function, a conserved anti-aging mechanism termed mitohormesis. Here, we show that harmol, a member of the beta-carbolines family with anti-depressant properties, improves mitochondrial function and metabolic parameters, and extends healthspan(definition). Treatment with harmol induces a transient mitochondrial depolarization, a strong mitophagy response, and the AMPK compensatory pathway both in cultured C2C12 myotubes and in male mouse liver, brown adipose tissue and muscle, even though harmol crosses poorly the blood-brain barrier. Mechanistically, simultaneous modulation of the targets of harmol monoamine-oxidase B and GABA-A receptor reproduces harmol-induced mitochondrial improvements. Diet-induced pre-diabetic male mice improve their glucose tolerance, liver steatosis and insulin sensitivity after treatment with harmol. Harmol or a combination of monoamine oxidase B and GABA-A receptor modulators extend the lifespan of hermaphrodite Caenorhabditis elegans or female Drosophila melanogaster. Finally, two-year-old male and female mice treated with harmol exhibit delayed frailty onset with improved glycemia, exercise performance and strength. Our results reveal that peripheral targeting of monoamine oxidase B and GABA-A receptor, common antidepressant targets, extends healthspan through mitohormesis.

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OpenAlex
DOI
10.1038/s41467-023-38410-y
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2026-06-26 MST

Cite this

APA
Costa‐Machado, L.F., García-Domínguez, E., McIntyre, R.L., López-Aceituno, J.L., Ballesteros-Gonzalez, �., Tapia-Gonzalez, A., Fabregat‐Safont, D., Eisenberg, T., Gómez, J., Plaza, A., Sierra-Ramirez, A., Pérez‐Martínez, M., Villanueva-Bermejo, D., Fornari, T., Loza, M.I., Herradón, G., Hofer, S.J., Magnes, C., Madeo, F., &amp; Duerr, J.S. (2023). Peripheral modulation of antidepressant targets MAO-B and GABAAR by harmol induces mitohormesis and delays aging in preclinical models. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-023-38410-y
Vancouver
Costa‐Machado LF, García-Domínguez E, McIntyre RL, López-Aceituno JL, Ballesteros-Gonzalez �, Tapia-Gonzalez A, et al. Peripheral modulation of antidepressant targets MAO-B and GABAAR by harmol induces mitohormesis and delays aging in preclinical models. Nature Communications. 2023. doi:10.1038/s41467-023-38410-y.
BibTeX
@article{luis2023Periph, title = {Peripheral modulation of antidepressant targets MAO-B and GABAAR by harmol induces mitohormesis and delays aging in preclinical models}, author = {Luis Filipe Costa‐Machado and Esther García-Domínguez and Rebecca L. McIntyre and José Luis López-Aceituno and Álvaro Ballesteros-Gonzalez and Andrea Tapia-Gonzalez and David Fabregat‐Safont and Tobias Eisenberg and Jesús Gómez and Adrián Plaza and Aranzazu Sierra-Ramirez and Manuel Pérez‐Martínez and David Villanueva-Bermejo and Tiziana Fornari and Marı́a Isabel Loza and Gonzalo Herradón and Sebastian J. Hofer and Christoph Magnes and Frank Madeo and Janet S. Duerr and Óscar J. Pozo and Máximo Ibo Galindo and Isabel del Pino and Riekelt H. Houtkooper and Diego Megı́as}, journal = {Nature Communications}, year = {2023}, doi = {10.1038/s41467-023-38410-y}, }

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