Cargando…

Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial

The geroscience hypothesis proposes that therapy to slow or reverse molecular changes that occur with aging can delay or prevent multiple chronic diseases and extend healthy lifespan(1–3). Caloric restriction (CR), defined as lessening caloric intake without depriving essential nutrients(4), results...

Descripción completa

Detalles Bibliográficos
Autores principales: Waziry, R., Ryan, C. P., Corcoran, D. L., Huffman, K. M., Kobor, M. S., Kothari, M., Graf, G. H., Kraus, V. B., Kraus, W. E., Lin, D. T. S., Pieper, C. F., Ramaker, M. E., Bhapkar, M., Das, S. K., Ferrucci, L., Hastings, W. J., Kebbe, M., Parker, D. C., Racette, S. B., Shalev, I., Schilling, B., Belsky, D. W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10148951/
https://www.ncbi.nlm.nih.gov/pubmed/37118425
http://dx.doi.org/10.1038/s43587-022-00357-y
_version_ 1785035072046366720
author Waziry, R.
Ryan, C. P.
Corcoran, D. L.
Huffman, K. M.
Kobor, M. S.
Kothari, M.
Graf, G. H.
Kraus, V. B.
Kraus, W. E.
Lin, D. T. S.
Pieper, C. F.
Ramaker, M. E.
Bhapkar, M.
Das, S. K.
Ferrucci, L.
Hastings, W. J.
Kebbe, M.
Parker, D. C.
Racette, S. B.
Shalev, I.
Schilling, B.
Belsky, D. W.
author_facet Waziry, R.
Ryan, C. P.
Corcoran, D. L.
Huffman, K. M.
Kobor, M. S.
Kothari, M.
Graf, G. H.
Kraus, V. B.
Kraus, W. E.
Lin, D. T. S.
Pieper, C. F.
Ramaker, M. E.
Bhapkar, M.
Das, S. K.
Ferrucci, L.
Hastings, W. J.
Kebbe, M.
Parker, D. C.
Racette, S. B.
Shalev, I.
Schilling, B.
Belsky, D. W.
author_sort Waziry, R.
collection PubMed
description The geroscience hypothesis proposes that therapy to slow or reverse molecular changes that occur with aging can delay or prevent multiple chronic diseases and extend healthy lifespan(1–3). Caloric restriction (CR), defined as lessening caloric intake without depriving essential nutrients(4), results in changes in molecular processes that have been associated with aging, including DNA methylation (DNAm)(5–7), and is established to increase healthy lifespan in multiple species(8,9). Here we report the results of a post hoc analysis of the influence of CR on DNAm measures of aging in blood samples from the Comprehensive Assessment of Long-term Effects of Reducing Intake of Energy (CALERIE) trial, a randomized controlled trial in which n = 220 adults without obesity were randomized to 25% CR or ad libitum control diet for 2 yr (ref. (10)). We found that CALERIE intervention slowed the pace of aging, as measured by the DunedinPACE DNAm algorithm, but did not lead to significant changes in biological age estimates measured by various DNAm clocks including PhenoAge and GrimAge. Treatment effect sizes were small. Nevertheless, modest slowing of the pace of aging can have profound effects on population health(11–13). The finding that CR modified DunedinPACE in a randomized controlled trial supports the geroscience hypothesis, building on evidence from small and uncontrolled studies(14–16) and contrasting with reports that biological aging may not be modifiable(17). Ultimately, a conclusive test of the geroscience hypothesis will require trials with long-term follow-up to establish effects of intervention on primary healthy-aging endpoints, including incidence of chronic disease and mortality(18–20).
format Online
Article
Text
id pubmed-10148951
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Nature Publishing Group US
record_format MEDLINE/PubMed
spelling pubmed-101489512023-05-04 Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial Waziry, R. Ryan, C. P. Corcoran, D. L. Huffman, K. M. Kobor, M. S. Kothari, M. Graf, G. H. Kraus, V. B. Kraus, W. E. Lin, D. T. S. Pieper, C. F. Ramaker, M. E. Bhapkar, M. Das, S. K. Ferrucci, L. Hastings, W. J. Kebbe, M. Parker, D. C. Racette, S. B. Shalev, I. Schilling, B. Belsky, D. W. Nat Aging Letter The geroscience hypothesis proposes that therapy to slow or reverse molecular changes that occur with aging can delay or prevent multiple chronic diseases and extend healthy lifespan(1–3). Caloric restriction (CR), defined as lessening caloric intake without depriving essential nutrients(4), results in changes in molecular processes that have been associated with aging, including DNA methylation (DNAm)(5–7), and is established to increase healthy lifespan in multiple species(8,9). Here we report the results of a post hoc analysis of the influence of CR on DNAm measures of aging in blood samples from the Comprehensive Assessment of Long-term Effects of Reducing Intake of Energy (CALERIE) trial, a randomized controlled trial in which n = 220 adults without obesity were randomized to 25% CR or ad libitum control diet for 2 yr (ref. (10)). We found that CALERIE intervention slowed the pace of aging, as measured by the DunedinPACE DNAm algorithm, but did not lead to significant changes in biological age estimates measured by various DNAm clocks including PhenoAge and GrimAge. Treatment effect sizes were small. Nevertheless, modest slowing of the pace of aging can have profound effects on population health(11–13). The finding that CR modified DunedinPACE in a randomized controlled trial supports the geroscience hypothesis, building on evidence from small and uncontrolled studies(14–16) and contrasting with reports that biological aging may not be modifiable(17). Ultimately, a conclusive test of the geroscience hypothesis will require trials with long-term follow-up to establish effects of intervention on primary healthy-aging endpoints, including incidence of chronic disease and mortality(18–20). Nature Publishing Group US 2023-02-09 2023 /pmc/articles/PMC10148951/ /pubmed/37118425 http://dx.doi.org/10.1038/s43587-022-00357-y Text en © The Author(s) 2023, corrected publication 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Letter
Waziry, R.
Ryan, C. P.
Corcoran, D. L.
Huffman, K. M.
Kobor, M. S.
Kothari, M.
Graf, G. H.
Kraus, V. B.
Kraus, W. E.
Lin, D. T. S.
Pieper, C. F.
Ramaker, M. E.
Bhapkar, M.
Das, S. K.
Ferrucci, L.
Hastings, W. J.
Kebbe, M.
Parker, D. C.
Racette, S. B.
Shalev, I.
Schilling, B.
Belsky, D. W.
Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial
title Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial
title_full Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial
title_fullStr Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial
title_full_unstemmed Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial
title_short Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial
title_sort effect of long-term caloric restriction on dna methylation measures of biological aging in healthy adults from the calerie trial
topic Letter
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10148951/
https://www.ncbi.nlm.nih.gov/pubmed/37118425
http://dx.doi.org/10.1038/s43587-022-00357-y
work_keys_str_mv AT waziryr effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT ryancp effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT corcorandl effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT huffmankm effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT koborms effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT kotharim effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT grafgh effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT krausvb effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT krauswe effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT lindts effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT piepercf effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT ramakerme effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT bhapkarm effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT dassk effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT ferruccil effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT hastingswj effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT kebbem effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT parkerdc effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT racettesb effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT shalevi effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT schillingb effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial
AT belskydw effectoflongtermcaloricrestrictionondnamethylationmeasuresofbiologicalaginginhealthyadultsfromthecalerietrial