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Journal Article

Centenarian clocks: epigenetic clocks for validating claims of exceptional longevity

Eric Dec; James Clement; Kaiyang Cheng; George M. Church; Michael B. Fossel; David H. Rehkopf; Luis Rosero-Bixby; Michael S. Kobor; David TS. Lin; Ake T. Lu; Zhe Fei; Wei Guo; Yap Ching Chew; Xiaojing Yang; Sulistyo E. Dwi Putra; Alex P. Reiner; Adolfo Correa; Adrian Vilalta; Chiara Pirazzini; Giuseppe Passarino; Daniela Monti; Beatrice Arosio; Paolo Garagnani; Claudio Franceschi; Steve Horvath
GeroScience · Vol. 45, Issue 3 · pp. 1817-1835 · 2023

Abstract

Claims surrounding exceptional longevity are sometimes disputed or dismissed for lack of credible evidence. Here, we present three DNA methylation-based age estimators (epigenetic clocks) for verifying age claims of centenarians. The three centenarian clocks were developed based on n = 7039 blood and saliva samples from individuals older than 40, including n = 184 samples from centenarians, 122 samples from semi-supercentenarians (aged 105 +), and 25 samples from supercentenarians (aged 110 +). The oldest individual was 115 years old. Our most accurate centenarian clock resulted from applying a neural network model to a training set composed of individuals older than 40. An epigenome-wide association study of age in different age groups revealed that age effects in young individuals (age < 40) are correlated ( r = 0.55) with age effects in old individuals (age > 90). We present a chromatin state analysis of age effects in centenarians. The centenarian clocks are expected to be useful for validating claims surrounding exceptional old age.

Bibliographic Information

JournalGeroScience
PublisherSpringer
Publication Date2023-03-25
Publication Year2023
Volume45
Issue3
Pages1817-1835
Document TypeJournal Article
eISSN2509-2723
DOI10.1007/s11357-023-00731-7

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NARA Access Coverage1978-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11357
Publisher PageOpen Publisher Page
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