Age-Related Decline in Myelin Markers and Oligodendrocyte Density in Rhesus Macaque Prefrontal Cortex

Ying Zhang1, Li Yao1, Longbao Lv1

  • 1Key Laboratory of Genetic Evolution and Animal Models, Key Laboratory of Animal Models and Human Disease Mechanisms of Yunnan Province, National Research Facility for Phenotypic and Genetic Analysis of Model Animals (Primate Facility), National Resource Center for Non-Human Primates, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, Yunnan 650201, China.

Eneuro
|April 2, 2026
PubMed

Insights

Myelin and oligodendrocyte cells in the primate prefrontal cortex change with age, peaking in adolescence and declining in older macaques. This study maps these changes across the lifespan, aiding brain aging research.

Area of Science:

  • Neuroscience
  • Aging Research
  • Primate Brain Development

Background:

  • Age-related myelin alterations impact brain function.
  • Limited characterization of myelin markers and oligodendrocyte lineage cells across the primate lifespan.
  • Understanding these changes is crucial for brain aging and neurodegenerative disease research.

Purpose of the Study:

  • To characterize age-associated changes in myelin and oligodendrocyte lineage cells in the primate prefrontal cortex (PFC).
  • To establish a multimodal, cross-sectional framework of myelin-related imaging and cellular markers across the rhesus macaque lifespan.
  • To provide a reference dataset for oligodendrocyte lineage dynamics in a translationally relevant model.

Main Methods:

  • Multimodal analysis combining MRI, histology, immunohistochemistry, and RNAscope in situ hybridization.
  • Cross-sectional study of rhesus macaques aged 5, 10, 15, and 30 years.
  • Quantification of PFC subregion volumes, myelin water fraction, and oligodendrocyte lineage markers (Olig2, OPCs).

Main Results:

  • Myelin water fraction and brain volumes increased through adolescence (peaking at 15 years) and declined in aged macaques.
  • Age-associated changes in myelin organization and myelin fragments within microglia were observed.
  • Oligodendrocyte precursor cell (OPC) density showed a non-linear pattern across development and aging, correlating with myelin imaging measures.

Conclusions:

  • Defined an age-related framework for myelin alterations and oligodendrocyte lineage markers in the primate PFC.
  • Established normative age-related patterns in myelin imaging, microglial-myelin interactions, and oligodendrocyte marker expression.
  • Provides a foundation for future studies on myelin maintenance and interventions during brain aging.

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