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Combined activation of the energy and cellular-defense pathways may explain the potent anti-senescence activity of methylene blue

Hani Atamna, Wafa Atamna, Ghaith Al‐Eyd, Gregory Shanower, Joseph M. Dhahbi

Redox Biology · 2015 · ▲ 39 citations

Abstract

Methylene blue (MB) delays cellular senescence(definition), induces complex-IV, and activates Keap1/Nrf2; however, the molecular link of these effects to MB is unclear. Since MB is redox-active, we investigated its effect on the NAD/NADH ratio in IMR90 cells. The transient increase in NAD/NADH observed in MB-treated cells triggered an investigation of the energy regulator AMPK. MB induced AMPK phosphorylation in a transient pattern, which was followed by the induction of PGC1α and SURF1: both are inducers of mitochondrial and complex-IV biogenesis. Subsequently MB-treated cells exhibited >100% increase in complex-IV activity and a 28% decline in cellular oxidants. The telomeres erosion rate was also significantly lower in MB-treated cells. A previous research suggested that the pattern of AMPK activation (i.e., chronic or transient) determines the AMPK effect on cell senescence. We identified that the anti-senescence activity of MB (transient activator) was 8-times higher than that of AICAR (chronic activator). Since MB lacked an effect on cell cycle, an MB-dependent change to cell cycle is unlikely to contribute to the anti-senescence activity. The current findings in conjunction with the activation of Keap1/Nrf2 suggest a synchronized activation of the energy and cellular defense pathways as a possible key factor in MB's potent anti-senescence activity.

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OpenAlex
DOI
10.1016/j.redox.2015.09.004
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2026-07-06 MST

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APA
Atamna, H., Atamna, W., Al‐Eyd, G., Shanower, G., &amp; Dhahbi, J.M. (2015). Combined activation of the energy and cellular-defense pathways may explain the potent anti-senescence activity of methylene blue. <em>Redox Biology</em>. https://doi.org/10.1016/j.redox.2015.09.004
Vancouver
Atamna H, Atamna W, Al‐Eyd G, Shanower G, Dhahbi JM. Combined activation of the energy and cellular-defense pathways may explain the potent anti-senescence activity of methylene blue. Redox Biology. 2015. doi:10.1016/j.redox.2015.09.004.
BibTeX
@article{hani2015Combin, title = {Combined activation of the energy and cellular-defense pathways may explain the potent anti-senescence activity of methylene blue}, author = {Hani Atamna and Wafa Atamna and Ghaith Al‐Eyd and Gregory Shanower and Joseph M. Dhahbi}, journal = {Redox Biology}, year = {2015}, doi = {10.1016/j.redox.2015.09.004}, }

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