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    Melatonin Modulates Cell Survival of New Neurons in the Hippocampus of Adult Mice

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    Resumen
    Regulation of adult hippocampal neurogenesis is influenced by circadian rhythm, affected by the manipulation of sleep, and is disturbed in animal models of affective disorders. These observations and the link between dysregulation of the circadian production of melatonin and neuropsychiatric disorders prompted us to investigate the potential role of melatonin in controlling adult hippocampal neurogenesis. In vitro, melatonin increased the number of new neurons derived from adult hippocampal neural precursor cells in vitro by promoting cell survival. This effect was partially dependent on the activation of melatonin receptors as it could be blocked by the application of receptor antagonist luzindole. There was no effect of melatonin on cell proliferation. Similarly, in the dentate gyrus of adult C57BL/6 mice in vivo, exogenous melatonin (8_mg/kg) also increased the survival of neuronal progenitor cells and post-mitotic immature neurons. Melatonin did not affect precursor cell proliferation in vivo and also did not influence neuronal and glial cell maturation. Moreover, melatonin showed antidepressant-like effects in the Porsolt forced swim test. These results indicate that melatonin through its receptor can modulate the survival of newborn neurons in the adult hippocampus, making it the first known exogenously applicable substance with such specificity
    URI
    http://repositorio.inprf.gob.mx/handle/123456789/6841
    https://doi.org/10.1038/npp.2009.46
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    Fecha
    2009
    Autor
    Ramírez-Rodríguez, Gerardo
    Klempin, Friederike
    Babu, Harish
    Benítez-King, Gloria
    Kempermann, Gerd
    Nivel de acceso
    acceso cerrado
    Nombre de la Rev. [SO]
    Neuropsychopharmacology
    Publisher
    Elsevier Science INC, 360 Park Ave South, New York, NY 10010-1710 USA
    Volumen [VL], Número [SU], Paginación [PG]
    34 (9) 2180-2191 p.
     
    versión del editor
     
    Idioma [LA]
    eng
    Palabras clave otro idioma [KO], Descriptores [Mesh], Descriptores [Meshm]
    Células madre
     
    Neurogénesis adulta
     
    Células precursoras
     
    Depresión
     
    Supervivencia
     
    Tipo de documento [TP]
    article

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