Literature DB >> 30674088

Transient Improvement of Cerebellar Oligodendroglial Development in a Neonatal Hyperoxia Model by PDGFA Treatment.

Till Scheuer1, Luisa Sophie Klein1, Christoph Bührer1, Stefanie Endesfelder1, Thomas Schmitz1.   

Abstract

In preterm infants, the changes from fetal life to ex-utero conditions often coincide with reduced growth and white matter damage of the cerebellum. The premature increase in arterial oxygen tension caused by preterm birth may dysregulate cerebellar development. In a hyperoxia rat model of white matter damage to mimic a steep increase in oxygen levels by 24 h exposure to 80% O2 from postnatal day 6 (P6) to day 7, we analyzed growth factor (GF) synthesis of cerebellar astrocytes. Determination of GF production was performed in astrocytes after Magnetic-activated cell sorting (MACS) isolation from cerebelli after hyperoxia exposure ex vivo, and also in astroglial cultures. Oligodendrocyte progenitor cell (OPC) function was analyzed in cerebellar OPCs isolated by MACS after hyperoxia. Administration of PDGFA from P6 to P11, during hyperoxia and during 4 days recovery, was finally tested for protection of oligodendroglia and myelination. As a result, expression of the GFs Pdgfa, Fgf2, and Bdnf was diminished in cerebellar astrocytes in vitro and in vivo. Gene expression of Olig1, Olig2, Sox9, Sox10, and Cnp was reduced in OPCs in vivo. Nasal PDGFA application improved oligodendroglial proliferation after hyperoxia at P7. However, this treatment effect vanished until P9. Impaired MBP expression after hyperoxia was attenuated by PDGFA treatment until P11, but not beyond when PDGFA supply was stopped. In this study on neonatal cerebellar injury, it is documented for the first time that improvement of oligodendroglial proliferation and of myelination can be achieved by PDGFA treatment. However, the treatment benefit is not maintained long term.
© 2019 Wiley Periodicals, Inc.

Entities:  

Keywords:  astroglia; cerebellum; hyperoxia; oligodendroglia; preterm birth

Year:  2019        PMID: 30674088     DOI: 10.1002/dneu.22667

Source DB:  PubMed          Journal:  Dev Neurobiol        ISSN: 1932-8451            Impact factor:   3.964


  2 in total

1.  Astrocytic Sonic Hedgehog Alleviates Intracerebral Hemorrhagic Brain Injury via Modulation of Blood-Brain Barrier Integrity.

Authors:  Gebeili Xing; Tianman Zhao; Xiyue Zhang; He Li; Xiuping Li; Pan Cui; Minshu Li; Daojing Li; Nan Zhang; Wei Jiang
Journal:  Front Cell Neurosci       Date:  2020-12-03       Impact factor: 5.505

Review 2.  Perinatal Hyperoxia and Developmental Consequences on the Lung-Brain Axis.

Authors:  Stefanie Obst; Josephine Herz; Miguel A Alejandre Alcazar; Stefanie Endesfelder; Marius A Möbius; Mario Rüdiger; Ursula Felderhoff-Müser; Ivo Bendix
Journal:  Oxid Med Cell Longev       Date:  2022-02-24       Impact factor: 6.543

  2 in total

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