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Novel aspects of age-protection by spermidine supplementation are associated with preserved telomere length

Alexander Wirth, Bettina Wolf, Cheng-Kai Huang, Silke Glage, Sebastian J. Hofer, Marion Bankstahl, Christian Bär, Thomas Thum, Kai G. Kahl, Stephan J. Sigrist, Frank Madeo, Jens P. Bankstahl, Evgeni Ponimaskin

GeroScience · 2021 · ▲ 40 citations

Abstract

Ageing provokes a plethora of molecular, cellular and physiological deteriorations, including heart failure, neurodegeneration, metabolic maladaptation, telomere(definition) attrition and hair loss. Interestingly, on the molecular level, the capacity to induce autophagy(definition), a cellular recycling and cleaning process, declines with age across a large spectrum of model organisms and is thought to be responsible for a subset of age-induced changes. Here, we show that a 6-month administration of the natural autophagy inducer spermidine in the drinking water to aged mice is sufficient to significantly attenuate distinct age-associated phenotypes. These include modulation of brain glucose metabolism, suppression of distinct cardiac inflammation parameters, decreased number of pathological sights in kidney and liver and decrease of age-induced hair loss. Interestingly, spermidine-mediated age protection was associated with decreased telomere attrition, arguing in favour of a novel cellular mechanism behind the anti-ageing effects of spermidine administration.

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Provenance

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OpenAlex
DOI
10.1007/s11357-020-00310-0
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2026-06-16 MST

Cite this

APA
Wirth, A., Wolf, B., Huang, C., Glage, S., Hofer, S.J., Bankstahl, M., Bär, C., Thum, T., Kahl, K.G., Sigrist, S.J., Madeo, F., Bankstahl, J.P., &amp; Ponimaskin, E. (2021). Novel aspects of age-protection by spermidine supplementation are associated with preserved telomere length. <em>GeroScience</em>. https://doi.org/10.1007/s11357-020-00310-0
Vancouver
Wirth A, Wolf B, Huang C, Glage S, Hofer SJ, Bankstahl M, et al. Novel aspects of age-protection by spermidine supplementation are associated with preserved telomere length. GeroScience. 2021. doi:10.1007/s11357-020-00310-0.
BibTeX
@article{alexander2021Novela, title = {Novel aspects of age-protection by spermidine supplementation are associated with preserved telomere length}, author = {Alexander Wirth and Bettina Wolf and Cheng-Kai Huang and Silke Glage and Sebastian J. Hofer and Marion Bankstahl and Christian Bär and Thomas Thum and Kai G. Kahl and Stephan J. Sigrist and Frank Madeo and Jens P. Bankstahl and Evgeni Ponimaskin}, journal = {GeroScience}, year = {2021}, doi = {10.1007/s11357-020-00310-0}, }

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