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Reprint of “The developing oligodendrocyte: key cellular target in brain injury in the premature infant”
Authors:Joseph J. Volpe  Hannah C. Kinney  Frances E. Jensen  Paul A. Rosenberg
Affiliation:aDepartment of Neurology, Children's Hospital and Harvard Medical School, Boston, MA 02115, USA;bDepartment of Pathology, Children's Hospital and Harvard Medical School, Boston, MA 02115, USA
Abstract:Brain injury in the premature infant, a problem of enormous importance, is associated with a high risk of neurodevelopmental disability. The major type of injury involves cerebral white matter and the principal cellular target is the developing oligodendrocyte. The specific phase of the oligodendroglial lineage affected has been defined from study of both human brain and experimental models. This premyelinating cell (pre-OL) is vulnerable because of a series of maturation-dependent events. The pathogenesis of pre-OL injury relates to operation of two upstream mechanisms, hypoxia-ischemia and systemic infection/inflammation, both of which are common occurrences in premature infants. The focus of this review and of our research over the past 15–20 years has been the cellular and molecular bases for the maturation-dependent vulnerability of the pre-OL to the action of the two upstream mechanisms. Three downstream mechanisms have been identified, i.e., microglial activation, excitotoxicity and free radical attack. The work in both experimental models and human brain has identified a remarkable confluence of maturation-dependent factors that render the pre-OL so exquisitely vulnerable to these downstream mechanisms. Most importantly, elucidation of these factors has led to delineation of a series of potential therapeutic interventions, which in experimental models show marked protective properties. The critical next step, i.e., clinical trials in the living infant, is now on the horizon.
Keywords:Abbreviations: DAMP, danger-associated molecular pattern   EAAT2, excitatory amino acid transporter 2   EPO, erythropoietin   IVH, intraventricular hemorrhage   LPS, lipopolysaccharide   MBP, myelin basic protein   NO, nitric oxide   OL, oligodendrocyte   PAMP, pathogen-associated molecular pattern   Pre-OL, premyelinating oligodendrocyte   PVL, periventricular leukomalacia   RNS, reactive nitrogen species   ROS, reactive oxygen species   TLR, toll-like receptor   VLBW, very low birth weight
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