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Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes

Metformin, the most commonly prescribed anti‐diabetes medication, has multiple reported health benefits, including lowering the risks of cardiovascular disease and cancer, improving cognitive function with age, extending survival in diabetic patients, and, in several animal models, promoting youthfu...

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Autores principales: Onken, Brian, Sedore, Christine A., Coleman‐Hulbert, Anna L., Hall, David, Johnson, Erik, Jones, Eleanor Grace, Banse, Stephen A., Huynh, Phu, Guo, Suzhen, Xue, Jian, Chen, Esteban, Harinath, Girish, Foulger, Anna C., Chao, Elizabeth A., Hope, June, Bhaumik, Dipa, Plummer, Todd, Inman, Delaney, Morshead, Mackenzie, Guo, Max, Lithgow, Gordon J., Phillips, Patrick C., Driscoll, Monica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8761014/
https://www.ncbi.nlm.nih.gov/pubmed/34837316
http://dx.doi.org/10.1111/acel.13488
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author Onken, Brian
Sedore, Christine A.
Coleman‐Hulbert, Anna L.
Hall, David
Johnson, Erik
Jones, Eleanor Grace
Banse, Stephen A.
Huynh, Phu
Guo, Suzhen
Xue, Jian
Chen, Esteban
Harinath, Girish
Foulger, Anna C.
Chao, Elizabeth A.
Hope, June
Bhaumik, Dipa
Plummer, Todd
Inman, Delaney
Morshead, Mackenzie
Guo, Max
Lithgow, Gordon J.
Phillips, Patrick C.
Driscoll, Monica
author_facet Onken, Brian
Sedore, Christine A.
Coleman‐Hulbert, Anna L.
Hall, David
Johnson, Erik
Jones, Eleanor Grace
Banse, Stephen A.
Huynh, Phu
Guo, Suzhen
Xue, Jian
Chen, Esteban
Harinath, Girish
Foulger, Anna C.
Chao, Elizabeth A.
Hope, June
Bhaumik, Dipa
Plummer, Todd
Inman, Delaney
Morshead, Mackenzie
Guo, Max
Lithgow, Gordon J.
Phillips, Patrick C.
Driscoll, Monica
author_sort Onken, Brian
collection PubMed
description Metformin, the most commonly prescribed anti‐diabetes medication, has multiple reported health benefits, including lowering the risks of cardiovascular disease and cancer, improving cognitive function with age, extending survival in diabetic patients, and, in several animal models, promoting youthful physiology and lifespan. Due to its longevity and health effects, metformin is now the focus of the first proposed clinical trial of an anti‐aging drug—the Targeting Aging with Metformin (TAME) program. Genetic variation will likely influence outcomes when studying metformin health effects in human populations. To test for metformin impact in diverse genetic backgrounds, we measured lifespan and healthspan effects of metformin treatment in three Caenorhabditis species representing genetic variability greater than that between mice and humans. We show that metformin increases median survival in three C. elegans strains, but not in C. briggsae and C. tropicalis strains. In C. briggsae, metformin either has no impact on survival or decreases lifespan. In C. tropicalis, metformin decreases median survival in a dose‐dependent manner. We show that metformin prolongs the period of youthful vigor in all C. elegans strains and in two C. briggsae strains, but that metformin has a negative impact on the locomotion of C. tropicalis strains. Our data demonstrate that metformin can be a robust promoter of healthy aging across different genetic backgrounds, but that genetic variation can determine whether metformin has positive, neutral, or negative lifespan/healthspan impact. These results underscore the importance of tailoring treatment to individuals when testing for metformin health benefits in diverse human populations.
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spelling pubmed-87610142022-01-20 Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes Onken, Brian Sedore, Christine A. Coleman‐Hulbert, Anna L. Hall, David Johnson, Erik Jones, Eleanor Grace Banse, Stephen A. Huynh, Phu Guo, Suzhen Xue, Jian Chen, Esteban Harinath, Girish Foulger, Anna C. Chao, Elizabeth A. Hope, June Bhaumik, Dipa Plummer, Todd Inman, Delaney Morshead, Mackenzie Guo, Max Lithgow, Gordon J. Phillips, Patrick C. Driscoll, Monica Aging Cell Original Papers Metformin, the most commonly prescribed anti‐diabetes medication, has multiple reported health benefits, including lowering the risks of cardiovascular disease and cancer, improving cognitive function with age, extending survival in diabetic patients, and, in several animal models, promoting youthful physiology and lifespan. Due to its longevity and health effects, metformin is now the focus of the first proposed clinical trial of an anti‐aging drug—the Targeting Aging with Metformin (TAME) program. Genetic variation will likely influence outcomes when studying metformin health effects in human populations. To test for metformin impact in diverse genetic backgrounds, we measured lifespan and healthspan effects of metformin treatment in three Caenorhabditis species representing genetic variability greater than that between mice and humans. We show that metformin increases median survival in three C. elegans strains, but not in C. briggsae and C. tropicalis strains. In C. briggsae, metformin either has no impact on survival or decreases lifespan. In C. tropicalis, metformin decreases median survival in a dose‐dependent manner. We show that metformin prolongs the period of youthful vigor in all C. elegans strains and in two C. briggsae strains, but that metformin has a negative impact on the locomotion of C. tropicalis strains. Our data demonstrate that metformin can be a robust promoter of healthy aging across different genetic backgrounds, but that genetic variation can determine whether metformin has positive, neutral, or negative lifespan/healthspan impact. These results underscore the importance of tailoring treatment to individuals when testing for metformin health benefits in diverse human populations. John Wiley and Sons Inc. 2021-11-27 2022-01 /pmc/articles/PMC8761014/ /pubmed/34837316 http://dx.doi.org/10.1111/acel.13488 Text en © 2021 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Papers
Onken, Brian
Sedore, Christine A.
Coleman‐Hulbert, Anna L.
Hall, David
Johnson, Erik
Jones, Eleanor Grace
Banse, Stephen A.
Huynh, Phu
Guo, Suzhen
Xue, Jian
Chen, Esteban
Harinath, Girish
Foulger, Anna C.
Chao, Elizabeth A.
Hope, June
Bhaumik, Dipa
Plummer, Todd
Inman, Delaney
Morshead, Mackenzie
Guo, Max
Lithgow, Gordon J.
Phillips, Patrick C.
Driscoll, Monica
Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes
title Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes
title_full Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes
title_fullStr Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes
title_full_unstemmed Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes
title_short Metformin treatment of diverse Caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes
title_sort metformin treatment of diverse caenorhabditis species reveals the importance of genetic background in longevity and healthspan extension outcomes
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8761014/
https://www.ncbi.nlm.nih.gov/pubmed/34837316
http://dx.doi.org/10.1111/acel.13488
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