Different pathological tau species are involved in memory loss in Alzheimer's disease, the most common cause of dementia among older people. However, little is known about how tau pathology directly affects adult hippocampal neurogenesis, a unique form of structural plasticity implicated in hippocampus-dependent spatial learning and mood-related behavior. To this aim, we generated a transgenic mouse model conditionally expressing a pathological tau fragment (26-230 aa of the longest human tau isoform, or N-tau) in nestin-positive stem/progenitor cells. We found that N-tau reduced the proliferation of progenitor cells in the adult dentate gyrus, reduced cell survival and increased cell death by a caspase-3-independent mechanism, and recruited microglia. Although the number of terminally differentiated neurons was reduced, these showed an increased dendritic arborization and spine density. This resulted in an increase of anxiety-related behavior and an impairment of episodic-like memory, whereas less complex forms of spatial learning remained unaltered. Understanding how pathological tau species directly affect neurogenesis is important for developing potential therapeutic strategies to direct neurogenic instructive cues for hippocampal function repair. (C) 2013 Elsevier Inc. All rights reserved.

Impact of N-tau on adult hippocampal neurogenesis, anxiety, and memory / Andrea, Pristera; Saraulli, Daniele; Stefano Farioli, Vecchioli; Georgios, Strimpakos; Marco, Costanzi; M. G., Di Certo; Sara, Cannas; Maria Teresa, Ciotti; Felice, Tirone; Elisabetta, Mattei; Cestari, Vincenzo; Nadia, Canu. - In: NEUROBIOLOGY OF AGING. - ISSN 0197-4580. - STAMPA. - 34:11(2013), pp. 2551-2563. [10.1016/j.neurobiolaging.2013.05.010]

Impact of N-tau on adult hippocampal neurogenesis, anxiety, and memory

SARAULLI, DANIELE;CESTARI, VINCENZO;
2013

Abstract

Different pathological tau species are involved in memory loss in Alzheimer's disease, the most common cause of dementia among older people. However, little is known about how tau pathology directly affects adult hippocampal neurogenesis, a unique form of structural plasticity implicated in hippocampus-dependent spatial learning and mood-related behavior. To this aim, we generated a transgenic mouse model conditionally expressing a pathological tau fragment (26-230 aa of the longest human tau isoform, or N-tau) in nestin-positive stem/progenitor cells. We found that N-tau reduced the proliferation of progenitor cells in the adult dentate gyrus, reduced cell survival and increased cell death by a caspase-3-independent mechanism, and recruited microglia. Although the number of terminally differentiated neurons was reduced, these showed an increased dendritic arborization and spine density. This resulted in an increase of anxiety-related behavior and an impairment of episodic-like memory, whereas less complex forms of spatial learning remained unaltered. Understanding how pathological tau species directly affect neurogenesis is important for developing potential therapeutic strategies to direct neurogenic instructive cues for hippocampal function repair. (C) 2013 Elsevier Inc. All rights reserved.
2013
adult hippocampal neurogenesis; anxiety; dentate gyrus; episodic-like memory; neuronal progenitor cell; tau
01 Pubblicazione su rivista::01a Articolo in rivista
Impact of N-tau on adult hippocampal neurogenesis, anxiety, and memory / Andrea, Pristera; Saraulli, Daniele; Stefano Farioli, Vecchioli; Georgios, Strimpakos; Marco, Costanzi; M. G., Di Certo; Sara, Cannas; Maria Teresa, Ciotti; Felice, Tirone; Elisabetta, Mattei; Cestari, Vincenzo; Nadia, Canu. - In: NEUROBIOLOGY OF AGING. - ISSN 0197-4580. - STAMPA. - 34:11(2013), pp. 2551-2563. [10.1016/j.neurobiolaging.2013.05.010]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/516548
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