Literature DB >> 28123074

Abnormal neurogenesis and cortical growth in congenital heart disease.

Paul D Morton1,2, Ludmila Korotcova1,2, Bobbi K Lewis3, Shivaprasad Bhuvanendran4, Shruti D Ramachandra1,2, David Zurakowski5, Jiangyang Zhang6, Susumu Mori6, Joseph A Frank3,7, Richard A Jonas8,2, Vittorio Gallo8, Nobuyuki Ishibashi8,2.   

Abstract

Long-term neurological deficits due to immature cortical development are emerging as a major challenge in congenital heart disease (CHD). However, cellular mechanisms underlying dysregulation of perinatal corticogenesis in CHD remain elusive. The subventricular zone (SVZ) represents the largest postnatal niche of neural stem/progenitor cells (NSPCs). We show that the piglet SVZ resembles its human counterpart and displays robust postnatal neurogenesis. We present evidence that SVZ NSPCs migrate to the frontal cortex and differentiate into interneurons in a region-specific manner. Hypoxic exposure of the gyrencephalic piglet brain recapitulates CHD-induced impaired cortical development. Hypoxia reduces proliferation and neurogenesis in the SVZ, which is accompanied by reduced cortical growth. We demonstrate a similar reduction in neuroblasts within the SVZ of human infants born with CHD. Our findings demonstrate that SVZ NSPCs contribute to perinatal corticogenesis and suggest that restoration of SVZ NSPCs' neurogenic potential is a candidate therapeutic target for improving cortical growth in CHD.
Copyright © 2017, American Association for the Advancement of Science.

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Year:  2017        PMID: 28123074      PMCID: PMC5467873          DOI: 10.1126/scitranslmed.aah7029

Source DB:  PubMed          Journal:  Sci Transl Med        ISSN: 1946-6234            Impact factor:   17.956


  67 in total

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5.  Fetal Brain Volume Predicts Neurodevelopment in Congenital Heart Disease.

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6.  Impact of Cardiopulmonary Bypass on Neurogenesis and Cortical Maturation.

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