Skip to content
Citation only via OpenAlex

Accelerated hippocampal biological aging in bipolar disorder

Gabriel R. Fries, Isabelle E. Bauer, Giselli Scaini, Samira S. Valvassori, Consuelo Walss‐Bass, Jair C. Soares, João Quevedo

Bipolar Disorders · 2019 · ▲ 91 citations

Abstract

OBJECTIVES: Evidence suggests accelerated aging mechanisms in bipolar disorder (BD), including DNA methylation (DNAm) aging in blood. However, it is unknown whether such mechanisms are also evident in the brain, in particular in association with other biological clocks. To investigate this, we interrogated genome-wide DNAm in postmortem hippocampus from 32 BD-I patients and 32 non-psychiatric controls group-matched for age and sex from the NIMH Human Brain Collection Core. METHODS: DNAm age and epigenetic aging acceleration were estimated using the Horvath method. Telomere(definition) length (TL) and mitochondrial DNA (mtDNA) copy number were quantified by real-time PCR. Between-group differences were assessed by linear regression and univariate general linear models with age, sex, race, postmortem interval, tissue pH, smoking, and body mass index included as co-variates. RESULTS: Groups did not differ for epigenetic aging acceleration when considering the entire sample. However, after splitting the sample by the median age, an epigenetic aging acceleration was detected in patients compared to controls among older subjects (P = .042). While TL did not differ between groups, a reduction in mtDNA copy number was observed in patients compared to controls (P = .047). In addition, significant correlations were observed between epigenetic aging acceleration and TL (r = -.337, P = .006), as well as between TL and mtDNA copy number (r = .274, P = .028). CONCLUSIONS: Hippocampal aging may underlie neurocognitive dysfunctions observed in BD patients. Moreover, our results suggest a complex cross-talk between biological clocks in hippocampus that may underlie clinical manifestations of premature aging in BD.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1111/bdi.12876
Canonical
link ↗
Fetched
2026-07-15 MST

Cite this

APA
Fries, G.R., Bauer, I.E., Scaini, G., Valvassori, S.S., Walss‐Bass, C., Soares, J.C., &amp; Quevedo, J. (2019). Accelerated hippocampal biological aging in bipolar disorder. <em>Bipolar Disorders</em>. https://doi.org/10.1111/bdi.12876
Vancouver
Fries GR, Bauer IE, Scaini G, Valvassori SS, Walss‐Bass C, Soares JC, et al. Accelerated hippocampal biological aging in bipolar disorder. Bipolar Disorders. 2019. doi:10.1111/bdi.12876.
BibTeX
@article{gabriel2019Accele, title = {Accelerated hippocampal biological aging in bipolar disorder}, author = {Gabriel R. Fries and Isabelle E. Bauer and Giselli Scaini and Samira S. Valvassori and Consuelo Walss‐Bass and Jair C. Soares and João Quevedo}, journal = {Bipolar Disorders}, year = {2019}, doi = {10.1111/bdi.12876}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings