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Authordc.contributor.authorHernández, Pedro es_CL
Authordc.contributor.authorOlivari, Francisco es_CL
Authordc.contributor.authorSarrazín, Andrés F. es_CL
Authordc.contributor.authorSandoval, Pablo es_CL
Authordc.contributor.authorAllende Connelly, Miguel es_CL
Admission datedc.date.accessioned2008-05-14T14:10:10Z
Available datedc.date.available2008-05-14T14:10:10Z
Publication datedc.date.issued2007es_CL
Cita de ítemdc.identifier.citationDEVELOPMENTAL NEUROBIOLOGY Vol. 67 APR 2007 5 637-654es_CL
Identifierdc.identifier.urihttps://repositorio.uchile.cl/handle/2250/118725
General notedc.descriptionPublicación ISIes_CL
Abstractdc.description.abstractMechanosensory hair cells are essential for audition in vertebrates, and in many species, have the capacity for regeneration when damaged. Regeneration is robust in the fish lateral line system as new hair cells can reappear after damage induced by waterborne aminoglycoside antibiotics, platinum-based drugs, and heavy metals. Here, we characterize the loss and reappearance of lateral line hair cells induced in zebrafish larvae treated with copper sulfate using diverse molecular markers. Transgenic fish that express green fluorescent protein in different cell types in the lateral line system have allowed us to follow the regeneration of hair cells after different damage protocols. We show that conditions that damage only differentiated hair cells lead to reappearance of new hair cells within 24 h from nondividing precursors, whereas harsher conditions are followed by a longer recovery period that is accompanied by extensive cell division. In order to characterize the cell population that gives rise to new hair cells, we describe the expression of a neural stem cell marker in neuromasts. The zebratish sox2 gene is strongly expressed in neuromast progenitor cells, including those of the migrating lateral line primordium, the accessory cells that underlie the hair cells in neuromasts, and in interneuromastic cells that give rise to new neuromasts. Moreover, we find that most of the cells that proliferate within the neuromast during regeneration express this marker. Thus, our results describe the dynamics of hair cell regeneration in zebratish and suggest the existence of at least two mechanisms for recovery of these cells in neuromasts. (c) 2007 Wiley Periodicals, Inc.es_CL
Lenguagedc.language.isoenes_CL
Keywordsdc.subjectSox2es_CL
Area Temáticadc.subject.otherDevelopmental Biology; Neuroscienceses_CL
Títulodc.titleRegeneration in zebrafish lateral line neuromasts: Expression of the neural progenitor cell marker Sox2 and proliferation-dependent and-independent mechanisms of hair cell renewales_CL
Document typedc.typeArtículo de revista


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