Related Experiment Video
Updated: Apr 22, 2026

Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
White matter tract and glial-associated changes in 5-hydroxymethylcytosine following chronic cerebral hypoperfusion
Yanina Tsenkina1, Alexey Ruzov2, Catherine Gliddon3
1Centre for Clinical Brain Sciences, School of Clinical Sciences, Chancellor's Building, University of Edinburgh, 49 Little France Crescent, Edinburgh EH16 4SB, UK; The Miami Project to Cure Paralysis, Lois Pope Life Center, University of Miami, 1095 NW 14th Terrace, Miami, FL 33136, USA.
Abstract:
White matter abnormalities due to age-related cerebrovascular alterations is a common pathological hallmark associated with functional impairment in the elderly which has been modeled in chronically hypoperfused mice. 5-Methylcytosine (5mC) and its oxidized derivative 5-hydroxymethylcytosine (5hmC) are DNA modifications that have been recently linked with age-related neurodegeneration and cerebrovascular pathology. Here we conducted a pilot investigation of whether chronic cerebral hypoperfusion might affect genomic distribution of these modifications and/ or a Ten-Eleven Translocation protein 2 (TET2) which catalyses hydroxymethylation in white and grey matter regions of this animal model. Immunohistochemical evaluation of sham and chronically hypoperfused mice a month after surgery revealed significant (p<0.05) increases in the proportion of 5hmC positive cells, Iba1 positive inflammatory microglia, and NG2 positive oligodendroglial progenitors in the hypoperfused corpus callosum. In the same white matter tract there was an absence of hypoperfusion-induced alterations in the proportion of 5mC, TET2 positive cells and CC1 positive mature oligodrendrocytes. Correlation analysis across animals within both treatment groups demonstrated a significant association of the elevated 5hmC levels with increases in the proportion of inflammatory microglia only (p=0.01) in the corpus callosum. In vitro studies revealed that 5hmC is lost during oligodendroglial maturation but not microglial activation. Additionally, TET1, TET2, and TET3 protein levels showed dynamic alterations during oligodendroglial development and following oxidative stress in vitro. Our study suggests that 5hmC exhibits white matter tract and cell type specific dynamics following chronic cerebral hypoperfusion in mice.
Insights
Chronic cerebral hypoperfusion increases 5-hydroxymethylcytosine (5hmC) in white matter, correlating with microglial activation. This DNA modification shows cell-type specific dynamics during aging and in response to reduced blood flow.
Area of Science:
- Neuroscience
- Epigenetics
- Cerebrovascular Research
Background:
- White matter abnormalities are common in elderly individuals, linked to cerebrovascular changes and functional decline.
- DNA modifications, 5-methylcytosine (5mC) and 5-hydroxymethylcytosine (5hmC), are implicated in age-related neurodegeneration and vascular pathology.
- Chronic cerebral hypoperfusion in mice serves as a model for age-related white matter changes.
Purpose of the Study:
- To investigate the impact of chronic cerebral hypoperfusion on the genomic distribution of 5mC and 5hmC.
- To examine alterations in Ten-Eleven Translocation protein 2 (TET2), an enzyme involved in DNA hydroxymethylation.
- To assess these changes in both white and grey matter regions of a mouse model.
Main Methods:
- Immunohistochemistry was used to evaluate sham and hypoperfused mice.
- Cellular markers included 5hmC, 5mC, Iba1 (microglia), NG2 (oligodendroglial progenitors), and CC1 (mature oligodendrocytes).
- In vitro studies assessed 5hmC dynamics during oligodendroglial maturation and TET protein alterations under oxidative stress.
Main Results:
- Hypoperfused mice showed increased 5hmC-positive cells and inflammatory microglia (Iba1) in the corpus callosum.
- No significant changes in 5mC or TET2-positive cells were observed in the affected white matter tract.
- Elevated 5hmC levels were significantly associated with increased inflammatory microglia in the corpus callosum.
Conclusions:
- Chronic cerebral hypoperfusion induces cell type-specific changes in DNA modifications within white matter.
- 5hmC dynamics are distinct in oligodendroglial maturation versus microglial activation.
- These findings highlight the dynamic role of 5hmC in white matter responses to hypoperfusion and aging.

