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Tau reduction with artificial microRNAs modulates neuronal physiology and improves tauopathy phenotypes in mice

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dc.contributor.author Facal, Carolina Lucía
dc.contributor.author Fernández Bessone, Iván
dc.contributor.author Muñiz, Javier Andrés
dc.contributor.author Pereyra, A. Ezequiel
dc.contributor.author Pedroncini, Olivia
dc.contributor.author Páez Paz, Indiana
dc.contributor.author Clerici Delville, Ramiro
dc.contributor.author Arnaiz, Cayetana
dc.contributor.author Urrutia, Leandro
dc.contributor.author Falasco, Germán
dc.contributor.author Argañaraz, Carla Verónica
dc.contributor.author Saez, Trinidad
dc.contributor.author Marin Burgin, Antonia
dc.contributor.author Soiza Reilly, Mariano
dc.contributor.author Falzone, Tomás
dc.contributor.author Avale, María Elena
dc.date.accessioned 2024-04-15T11:41:48Z
dc.date.available 2024-04-15T11:41:48Z
dc.date.issued 2024-02-03
dc.identifier.citation Facal CL, Fernández Bessone I, Muñiz JA, Pereyra AE, Pedroncini O, Páez-Paz I, Clerici-Delville R, Arnaiz C, Urrutia L, Falasco G, Argañaraz CV, Saez T, Marin-Burgin A, Soiza-Reilly M, Falzone T, Avale ME. Tau reduction with artificial microRNAs modulates neuronal physiology and improves tauopathy phenotypes in mice. Mol Ther. 2024 Apr 3;32(4):1080-1095. doi: 10.1016/j.ymthe.2024.01.033. Epub 2024 Feb 3. es_ES
dc.identifier.uri https://doi.org/10.1016/j.ymthe.2024.01.033
dc.identifier.uri https://repositorio.fleni.org.ar/xmlui/handle/123456789/1071
dc.description.abstract Abnormal tau accumulation is the hallmark of several neurodegenerative diseases, named tauopathies. Strategies aimed at reducing tau in the brain are promising therapeutic interventions, yet more precise therapies would require targeting specific nuclei and neuronal subpopulations affected by disease while avoiding global reduction of physiological tau. Here, we developed artificial microRNAs directed against the human MAPT mRNA to dwindle tau protein by engaging the endogenous RNA interference pathway. In human differentiated neurons in culture, microRNA-mediated tau reduction diminished neuronal firing without affecting neuronal morphology or impairing axonal transport. In the htau mouse model of tauopathy, we locally expressed artificial microRNAs in the prefrontal cortex (PFC), an area particularly vulnerable to initiating tau pathology in this model. Tau knockdown prevented the accumulation of insoluble and hyperphosphorylated tau, modulated firing activity of putative pyramidal neurons, and improved glucose uptake in the PFC. Moreover, such tau reduction prevented cognitive decline in aged htau mice. Our results suggest target engagement of designed tau-microRNAs to effectively reduce tau pathology, providing a proof of concept for a potential therapeutic approach based on local tau knockdown to rescue tauopathy-related phenotypes. es_ES
dc.language.iso eng es_ES
dc.publisher Cell Press es_ES
dc.subject Terapia Genética es_ES
dc.subject Genetic Therapy es_ES
dc.subject Ratones es_ES
dc.subject Mice es_ES
dc.subject Tauopatías es_ES
dc.subject Tauopathies es_ES
dc.subject MicroARNs es_ES
dc.subject Biología Molecular
dc.subject Molecular Biology
dc.title Tau reduction with artificial microRNAs modulates neuronal physiology and improves tauopathy phenotypes in mice es_ES
dc.type info:eu-repo/semantics/article es_ES
dc.description.fil Fil: Urrutia, Leandro. Fleni. Departamento de Diagnóstico por Imágenes. Centro de Imágenes Moleculares. Laboratorio De Imágenes Preclínicas; Argentina.
dc.description.fil Fil: Falasco, Germán. Fleni. Departamento de Diagnóstico por Imágenes. Centro de Imágenes Moleculares. Laboratorio De Imágenes Preclínicas; Argentina.
dc.relation.ispartofCOUNTRY Reino Unido
dc.relation.ispartofCITY Cambridge
dc.relation.ispartofTITLE Molecular therapy : the journal of the American Society of Gene Therapy
dc.relation.ispartofISSN 1525-0024
dc.type.snrd info:ar-repo/semantics/artículo es_ES


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