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Updated: Mar 29, 2026

Progenitor-derived Oligodendrocyte Culture System from Human Fetal Brain
Published on: December 20, 2012
Impaired oligodendrocyte maturation in preterm infants: Potential therapeutic targets
Erik van Tilborg1, Cobi J Heijnen2, Manon J Benders3
1Laboratory of Neuroimmunology and Developmental Origins of Disease, University Medical Center Utrecht, Utrecht, The Netherlands.
Insights
Perinatal diffuse white matter injury (WMI) is a major concern in preterm infants, leading to long-term cognitive and psychological issues. Understanding its molecular mechanisms is crucial for developing effective treatments for this neonatal brain injury.
Area of Science:
- Neonatal neurology
- Neuroscience
- Developmental biology
Background:
- Preterm birth presents significant challenges in neonatal care, with high morbidity rates.
- Perinatal diffuse white matter injury (WMI) is the most common brain injury in preterm infants, linked to cognitive and psychological deficits.
- Current treatment options for WMI are lacking, and its underlying mechanisms are not fully understood.
Purpose of the Study:
- To review the current state of perinatal diffuse WMI research.
- To explore the molecular pathophysiology of WMI, focusing on oligodendrocyte development.
- To discuss emerging concepts and animal models in WMI research.
Main Methods:
- Literature review of clinical and basic science research on perinatal WMI.
- Analysis of oligodendrocyte development in healthy and pathological conditions.
- Focus on signaling cascades implicated in WMI.
Main Results:
- Preterm birth complications like inflammation and hypoxia trigger microglial activation, excitotoxicity, and oxidative stress.
- These factors disrupt oligodendrocyte maturation and myelination, leading to WMI.
- The review details the complex interplay of molecular events affecting oligodendrocyte development.
Conclusions:
- Understanding the molecular mechanisms of impeded oligodendrocyte maturation in diffuse WMI is essential.
- Novel insights may lead to the development of desperately needed treatments for preterm infants.
- Improving the quality of life for preterm neonates is the ultimate goal.
Abstract:
Preterm birth is an evolving challenge in neonatal health care. Despite declining mortality rates among extremely premature neonates, morbidity rates remain very high. Currently, perinatal diffuse white matter injury (WMI) is the most commonly observed type of brain injury in preterm infants and has become an important research area. Diffuse WMI is associated with impaired cognitive, sensory and psychological functioning and is increasingly being recognized as a risk factor for autism-spectrum disorders, ADHD, and other psychological disturbances. No treatment options are currently available for diffuse WMI and the underlying pathophysiological mechanisms are far from being completely understood. Preterm birth is associated with maternal inflammation, perinatal infections and disrupted oxygen supply which can affect the cerebral microenvironment by causing activation of microglia, astrogliosis, excitotoxicity, and oxidative stress. This intricate interplay of events negatively influences oligodendrocyte development, causing arrested oligodendrocyte maturation or oligodendrocyte cell death, which ultimately results in myelination failure in the developing white matter. This review discusses the current state in perinatal WMI research, ranging from a clinical perspective to basic molecular pathophysiology. The complex regulation of oligodendrocyte development in healthy and pathological conditions is described, with a specific focus on signaling cascades that may play a role in WMI. Furthermore, emerging concepts in the field of WMI and issues regarding currently available animal models are put forward. Novel insights into the molecular mechanisms underlying impeded oligodendrocyte maturation in diffuse WMI may aid the development of novel treatment options which are desperately needed to improve the quality-of-life of preterm neonates.
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