Literature DB >> 20164362

Norepinephrine directly activates adult hippocampal precursors via beta3-adrenergic receptors.

Dhanisha J Jhaveri1, Eirinn W Mackay, Adam S Hamlin, Swananda V Marathe, L Sanjay Nandam, Vidita A Vaidya, Perry F Bartlett.   

Abstract

Adult hippocampal neurogenesis is a critical form of cellular plasticity that is greatly influenced by neural activity. Among the neurotransmitters that are widely implicated in regulating this process are serotonin and norepinephrine, levels of which are modulated by stress, depression and clinical antidepressants. However, studies to date have failed to address a direct role for either neurotransmitter in regulating hippocampal precursor activity. Here we show that norepinephrine but not serotonin directly activates self-renewing and multipotent neural precursors, including stem cells, from the hippocampus of adult mice. Mechanistically, we provide evidence that beta(3)-adrenergic receptors, which are preferentially expressed on a Hes5-expressing precursor population in the subgranular zone (SGZ), mediate this norepinephrine-dependent activation. Moreover, intrahippocampal injection of a selective beta(3)-adrenergic receptor agonist in vivo increases the number of proliferating cells in the SGZ. Similarly, systemic injection of the beta-adrenergic receptor agonist isoproterenol not only results in enhancement of proliferation in the SGZ but also leads to an increase in the percentage of nestin/glial fibrillary acidic protein double-positive neural precursors in vivo. Finally, using a novel ex vivo "slice-sphere" assay that maintains an intact neurogenic niche, we demonstrate that antidepressants that selectively block the reuptake of norepinephrine, but not serotonin, robustly increase hippocampal precursor activity via beta-adrenergic receptors. These findings suggest that the activation of neurogenic precursors and stem cells via beta(3)-adrenergic receptors could be a potent mechanism to increase neuronal production, providing a putative target for the development of novel antidepressants.

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Year:  2010        PMID: 20164362      PMCID: PMC2837927          DOI: 10.1523/JNEUROSCI.3780-09.2010

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  53 in total

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Authors:  Sudhirkumar U Yanpallewar; Kimberly Fernandes; Swananda V Marathe; Krishna C Vadodaria; Dhanisha Jhaveri; Karen Rommelfanger; Uma Ladiwala; Shanker Jha; Verena Muthig; Lutz Hein; Perry Bartlett; David Weinshenker; Vidita A Vaidya
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10.  Neuronal activity-induced Gadd45b promotes epigenetic DNA demethylation and adult neurogenesis.

Authors:  Dengke K Ma; Mi-Hyeon Jang; Junjie U Guo; Yasuji Kitabatake; Min-Lin Chang; Nattapol Pow-Anpongkul; Richard A Flavell; Binfeng Lu; Guo-Li Ming; Hongjun Song
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  52 in total

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2.  Homeostatic neurogenesis in the adult hippocampus does not involve amplification of Ascl1(high) intermediate progenitors.

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Review 3.  G-protein-coupled receptors in adult neurogenesis.

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Review 4.  Neurotransmitter-mediated control of neurogenesis in the adult vertebrate brain.

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Journal:  Development       Date:  2013-06       Impact factor: 6.868

5.  Developmental neurotoxicity resulting from pharmacotherapy of preterm labor, modeled in vitro: Terbutaline and dexamethasone, separately and together.

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Review 6.  Noradrenergic Modulation on Dopaminergic Neurons.

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Review 7.  The parasympathetic nervous system in the quest for stroke therapeutics.

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9.  β-Adrenergic regulation of cardiac progenitor cell death versus survival and proliferation.

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10.  Engrailed-2 (En2) deletion produces multiple neurodevelopmental defects in monoamine systems, forebrain structures and neurogenesis and behavior.

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Journal:  Hum Mol Genet       Date:  2015-07-28       Impact factor: 6.150

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