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Multi-tissue DNA methylation age: Molecular relationships and perspectives for advancing biomarker utility.


ABSTRACT: The multi-tissue DNA methylation estimator of chronological age (DNAm-age) has been associated with a wide range of exposures and health outcomes. Still, it is unclear how DNAm-age can have such broad relationships and how it can be best utilized as a biomarker. Understanding DNAm-age's molecular relationships is a promising approach to address this critical knowledge gap. In this review, we discuss the existing literature regarding DNAm-age's molecular relationships in six major categories: animal model systems, cancer processes, cellular aging processes, immune system processes, metabolic processes, and nucleic acid processes. We also present perspectives regarding the future of DNAm-age research, including the need to translate a greater number of ongoing research efforts to experimental and animal model systems.

SUBMITTER: Nwanaji-Enwerem JC 

PROVIDER: S-EPMC6047923 | biostudies-literature | 2018 Aug

REPOSITORIES: biostudies-literature

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Multi-tissue DNA methylation age: Molecular relationships and perspectives for advancing biomarker utility.

Nwanaji-Enwerem Jamaji C JC   Weisskopf Marc G MG   Baccarelli Andrea A AA  

Ageing research reviews 20180423


The multi-tissue DNA methylation estimator of chronological age (DNAm-age) has been associated with a wide range of exposures and health outcomes. Still, it is unclear how DNAm-age can have such broad relationships and how it can be best utilized as a biomarker. Understanding DNAm-age's molecular relationships is a promising approach to address this critical knowledge gap. In this review, we discuss the existing literature regarding DNAm-age's molecular relationships in six major categories: ani  ...[more]

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