Literature DB >> 26577812

Oxygen Tension Within the Neurogenic Niche Regulates Dopaminergic Neurogenesis in the Developing Midbrain.

Lisa Wagenführ1, Anne Karen Meyer1, Lara Marrone1,2, Alexander Storch1,2,3,4.   

Abstract

Oxygen tension is an important factor controlling stem cell proliferation and maintenance in various stem cell populations with a particular relevance in midbrain dopaminergic progenitors. Further studies have shown that the oxygen-dependent transcription factor hypoxia-inducible factor 1α (HIF-1α) is involved in these processes. However, all available studies on oxygen effects in dopaminergic neuroprogenitors were performed in vitro and thus it remains unclear whether tissue oxygen tension in the embryonic midbrain is also relevant for the regulation of dopaminergic neurogenesis in vivo. We thus dissect here the effects of oxygen tension in combination with HIF-1α conditional knockout on dopaminergic neurogenesis by using a novel experimental design allowing for the control of oxygen tension within the microenvironment of the neurogenic niche of the murine fetal midbrain in vivo. The microenvironment of the midbrain dopaminergic neurogenic niche was detected as hypoxic with oxygen tensions below 1.1%. Maternal oxygen treatment of 10%, 21%, and 75% atmospheric oxygen tension for 48 h translates into robust changes in fetal midbrain oxygenation. Fetal midbrain hypoxia hampered the generation of dopaminergic neurons and is accompanied with restricted fetal midbrain development. In contrast, induced hyperoxia stimulated proliferation and differentiation of dopaminergic progenitors during early and late embryogenesis. Oxygen effects were not directly mediated through HIF-1α signaling. These data--in agreement with in vitro data-indicate that oxygen is a crucial regulator of developmental dopaminergic neurogenesis. Our study provides the initial framework for future studies on molecular mechanisms mediating oxygen regulation of dopaminergic neurogenesis within the fetal midbrain as its natural environment.

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Year:  2016        PMID: 26577812      PMCID: PMC4742976          DOI: 10.1089/scd.2015.0214

Source DB:  PubMed          Journal:  Stem Cells Dev        ISSN: 1547-3287            Impact factor:   3.272


  52 in total

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2.  Lack of hypoxia-inducible factor-1 alpha impairs midbrain neural precursor cells involving vascular endothelial growth factor signaling.

Authors:  Javorina Milosevic; Martina Maisel; Florian Wegner; Julia Leuchtenberger; Roland H Wenger; Manfred Gerlach; Alexander Storch; Johannes Schwarz
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3.  Intermittent hypoxia promotes hippocampal neurogenesis and produces antidepressant-like effects in adult rats.

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Journal:  J Neurosci       Date:  2010-09-22       Impact factor: 6.167

4.  Oxygen regulates proliferation of neural stem cells through Wnt/β-catenin signalling.

Authors:  Lena Braunschweig; Anne K Meyer; Lisa Wagenführ; Alexander Storch
Journal:  Mol Cell Neurosci       Date:  2015-06-14       Impact factor: 4.314

5.  Defective brain development in mice lacking the Hif-1alpha gene in neural cells.

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Journal:  Mol Cell Biol       Date:  2003-10       Impact factor: 4.272

6.  Brain oxygen tension controls the expansion of outer subventricular zone-like basal progenitors in the developing mouse brain.

Authors:  Lisa Wagenführ; Anne K Meyer; Lena Braunschweig; Lara Marrone; Alexander Storch
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Review 7.  Biochemistry and genetics of von Willebrand factor.

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Journal:  PLoS One       Date:  2014-05-02       Impact factor: 3.240

9.  Development of the mesencephalic dopaminergic neuron system is compromised in the absence of neurogenin 2.

Authors:  E Andersson; J B Jensen; M Parmar; F Guillemot; A Björklund
Journal:  Development       Date:  2006-01-05       Impact factor: 6.868

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Authors:  Lorena Varela-Nallar; Macarena Rojas-Abalos; Ana C Abbott; Esteban A Moya; Rodrigo Iturriaga; Nibaldo C Inestrosa
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  14 in total

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2.  Effects of normobaric versus hyperbaric oxygen on cell injury induced by oxygen and glucose deprivation in acute brain slices.

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Review 3.  Lung bioengineering: physical stimuli and stem/progenitor cell biology interplay towards biofabricating a functional organ.

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4.  The Differentiation of Rat Oligodendroglial Cells Is Highly Influenced by the Oxygen Tension: In Vitro Model Mimicking Physiologically Normoxic Conditions.

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Review 5.  Brain Energy and Oxygen Metabolism: Emerging Role in Normal Function and Disease.

Authors:  Michelle E Watts; Roger Pocock; Charles Claudianos
Journal:  Front Mol Neurosci       Date:  2018-06-22       Impact factor: 5.639

Review 6.  Hypoxia and connectivity in the developing vertebrate nervous system.

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7.  Proximal Tubular Development Is Impaired with Downregulation of MAPK/ERK Signaling, HIF-1α, and Catalase by Hyperoxia Exposure in Neonatal Rats.

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Review 8.  How do established developmental risk-factors for schizophrenia change the way the brain develops?

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Journal:  Transl Psychiatry       Date:  2021-03-08       Impact factor: 6.222

9.  Hypoxic-Preconditioned Bone Marrow Stem Cell Medium Significantly Improves Outcome After Retinal Ischemia in Rats.

Authors:  Steven Roth; John C Dreixler; Biji Mathew; Irina Balyasnikova; Jacob R Mann; Venkat Boddapati; Lai Xue; Maciej S Lesniak
Journal:  Invest Ophthalmol Vis Sci       Date:  2016-06-01       Impact factor: 4.799

10.  Identification of HIVEP2 as a dopaminergic transcription factor related to substance use disorders in rats and humans.

Authors:  Juan Zhao; Chunnuan Chen; Richard L Bell; Hong Qing; Zhicheng Lin
Journal:  Transl Psychiatry       Date:  2019-10-04       Impact factor: 6.222

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