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A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens

Inflammation and ageing‐related DNA methylation patterns in the blood have been linked to a variety of morbidities, including cognitive decline and neurodegenerative disease. However, it is unclear how these blood‐based patterns relate to patterns within the brain and how each associates with centra...

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Autores principales: Stevenson, Anna J., McCartney, Daniel L., Gadd, Danni A., Shireby, Gemma, Hillary, Robert F., King, Declan, Tzioras, Makis, Wrobel, Nicola, McCafferty, Sarah, Murphy, Lee, McColl, Barry W., Redmond, Paul, Taylor, Adele M., Harris, Sarah E., Russ, Tom C., McIntosh, Andrew M., Mill, Jonathan, Smith, Colin, Deary, Ian J., Cox, Simon R., Marioni, Riccardo E., Spires‐Jones, Tara L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525452/
https://www.ncbi.nlm.nih.gov/pubmed/35362642
http://dx.doi.org/10.1111/ejn.15661
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author Stevenson, Anna J.
McCartney, Daniel L.
Gadd, Danni A.
Shireby, Gemma
Hillary, Robert F.
King, Declan
Tzioras, Makis
Wrobel, Nicola
McCafferty, Sarah
Murphy, Lee
McColl, Barry W.
Redmond, Paul
Taylor, Adele M.
Harris, Sarah E.
Russ, Tom C.
McIntosh, Andrew M.
Mill, Jonathan
Smith, Colin
Deary, Ian J.
Cox, Simon R.
Marioni, Riccardo E.
Spires‐Jones, Tara L.
author_facet Stevenson, Anna J.
McCartney, Daniel L.
Gadd, Danni A.
Shireby, Gemma
Hillary, Robert F.
King, Declan
Tzioras, Makis
Wrobel, Nicola
McCafferty, Sarah
Murphy, Lee
McColl, Barry W.
Redmond, Paul
Taylor, Adele M.
Harris, Sarah E.
Russ, Tom C.
McIntosh, Andrew M.
Mill, Jonathan
Smith, Colin
Deary, Ian J.
Cox, Simon R.
Marioni, Riccardo E.
Spires‐Jones, Tara L.
author_sort Stevenson, Anna J.
collection PubMed
description Inflammation and ageing‐related DNA methylation patterns in the blood have been linked to a variety of morbidities, including cognitive decline and neurodegenerative disease. However, it is unclear how these blood‐based patterns relate to patterns within the brain and how each associates with central cellular profiles. In this study, we profiled DNA methylation in both the blood and in five post mortem brain regions (BA17, BA20/21, BA24, BA46 and hippocampus) in 14 individuals from the Lothian Birth Cohort 1936. Microglial burdens were additionally quantified in the same brain regions. DNA methylation signatures of five epigenetic ageing biomarkers (‘epigenetic clocks’), and two inflammatory biomarkers (methylation proxies for C‐reactive protein and interleukin‐6) were compared across tissues and regions. Divergent associations between the inflammation and ageing signatures in the blood and brain were identified, depending on region assessed. Four out of the five assessed epigenetic age acceleration measures were found to be highest in the hippocampus (β range = 0.83–1.14, p ≤ 0.02). The inflammation‐related DNA methylation signatures showed no clear variation across brain regions. Reactive microglial burdens were found to be highest in the hippocampus (β = 1.32, p = 5 × 10(−4)); however, the only association identified between the blood‐ and brain‐based methylation signatures and microglia was a significant positive association with acceleration of one epigenetic clock (termed DNAm PhenoAge) averaged over all five brain regions (β = 0.40, p = 0.002). This work highlights a potential vulnerability of the hippocampus to epigenetic ageing and provides preliminary evidence of a relationship between DNA methylation signatures in the brain and differences in microglial burdens.
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spelling pubmed-95254522022-12-28 A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens Stevenson, Anna J. McCartney, Daniel L. Gadd, Danni A. Shireby, Gemma Hillary, Robert F. King, Declan Tzioras, Makis Wrobel, Nicola McCafferty, Sarah Murphy, Lee McColl, Barry W. Redmond, Paul Taylor, Adele M. Harris, Sarah E. Russ, Tom C. McIntosh, Andrew M. Mill, Jonathan Smith, Colin Deary, Ian J. Cox, Simon R. Marioni, Riccardo E. Spires‐Jones, Tara L. Eur J Neurosci Special Issue Articles Inflammation and ageing‐related DNA methylation patterns in the blood have been linked to a variety of morbidities, including cognitive decline and neurodegenerative disease. However, it is unclear how these blood‐based patterns relate to patterns within the brain and how each associates with central cellular profiles. In this study, we profiled DNA methylation in both the blood and in five post mortem brain regions (BA17, BA20/21, BA24, BA46 and hippocampus) in 14 individuals from the Lothian Birth Cohort 1936. Microglial burdens were additionally quantified in the same brain regions. DNA methylation signatures of five epigenetic ageing biomarkers (‘epigenetic clocks’), and two inflammatory biomarkers (methylation proxies for C‐reactive protein and interleukin‐6) were compared across tissues and regions. Divergent associations between the inflammation and ageing signatures in the blood and brain were identified, depending on region assessed. Four out of the five assessed epigenetic age acceleration measures were found to be highest in the hippocampus (β range = 0.83–1.14, p ≤ 0.02). The inflammation‐related DNA methylation signatures showed no clear variation across brain regions. Reactive microglial burdens were found to be highest in the hippocampus (β = 1.32, p = 5 × 10(−4)); however, the only association identified between the blood‐ and brain‐based methylation signatures and microglia was a significant positive association with acceleration of one epigenetic clock (termed DNAm PhenoAge) averaged over all five brain regions (β = 0.40, p = 0.002). This work highlights a potential vulnerability of the hippocampus to epigenetic ageing and provides preliminary evidence of a relationship between DNA methylation signatures in the brain and differences in microglial burdens. John Wiley and Sons Inc. 2022-04-06 2022-11 /pmc/articles/PMC9525452/ /pubmed/35362642 http://dx.doi.org/10.1111/ejn.15661 Text en © 2022 The Authors. European Journal of Neuroscience published by Federation of European Neuroscience Societies 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 Special Issue Articles
Stevenson, Anna J.
McCartney, Daniel L.
Gadd, Danni A.
Shireby, Gemma
Hillary, Robert F.
King, Declan
Tzioras, Makis
Wrobel, Nicola
McCafferty, Sarah
Murphy, Lee
McColl, Barry W.
Redmond, Paul
Taylor, Adele M.
Harris, Sarah E.
Russ, Tom C.
McIntosh, Andrew M.
Mill, Jonathan
Smith, Colin
Deary, Ian J.
Cox, Simon R.
Marioni, Riccardo E.
Spires‐Jones, Tara L.
A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens
title A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens
title_full A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens
title_fullStr A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens
title_full_unstemmed A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens
title_short A comparison of blood and brain‐derived ageing and inflammation‐related DNA methylation signatures and their association with microglial burdens
title_sort comparison of blood and brain‐derived ageing and inflammation‐related dna methylation signatures and their association with microglial burdens
topic Special Issue Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525452/
https://www.ncbi.nlm.nih.gov/pubmed/35362642
http://dx.doi.org/10.1111/ejn.15661
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