INVESTIGADORES
ACUÑA Leonardo
artículos
Título:
Rifampicin and Its Derivative Rifampicin Quinone Reduce Microglial Inflammatory Responses and Neurodegeneration Induced In Vitro by α-Synuclein Fibrillary Aggregates
Autor/es:
LEONARDO ACUÑA; SABAH HAMADAT; NATALIA S. CORBALAN; FLORENCIA GONZÁLEZ-LIZÁRRAGA; MAURICIO DOS SANTOS PEREIRA; JÉRÉMY ROCCA; JULIA E. SEPULVEDA-DIAZ; ELAINE DEL-BEL; DULCE PAPY- GARCIA; ROSANA N. CHEHIN; PATRICK P. MICHEL; RITA RAISMAN-VOZARI
Revista:
Cells
Editorial:
MDPI
Referencias:
Lugar: Basel; Año: 2019
ISSN:
2073-4409
Resumen:
La revista Cells, perteneciente la editorial MDPI se encuentra indexada en: Journal Citation Report (JCR) y posee un impacto de 5.656. Además, puede observarse en Pubmed home: https://www.ncbi.nlm.nih.gov/pubmed/?term=cells[jour], archives in PubMedCentral: https://www.ncbi.nlm.nih.gov/pmc/journals/2106/, indexes in Web-of-Science Core Collection Abstract:Aggregated forms of the synaptic protein α-synuclein (αS) have been proposed to operate as a molecular trigger for microglial inflammatory processes and neurodegeneration in Parkinson´s disease. Here, we used brain microglial cell cultures activated by fibrillary forms of recombinant human αS to assess the anti-inflammatory and neuroprotective activities of the antibiotic rifampicin (Rif) and its autoxidation product rifampicin quinone (RifQ). Pretreatments with Rif and RifQ reduced the secretion of prototypical inflammatory cytokines (TNF-, IL-6) and the burst of oxidative stress in microglial cells activated with αS fibrillary aggregates. Note, however, that RifQ was constantly more efficacious than its parent compound in reducing microglial activation. We also established that the suppressive effects of Rif and RifQ on cytokine release was probably due to inhibition of both PI3K- and non-PI3K-dependent signaling events. The control of oxidative stress appeared, however, essentially dependent on PI3K inhibition. Of interest, we also showed that RifQ was more efficient than Rif in protecting neuronal cells from toxic factors secreted by microglia activated by αS fibrils. Overall, data with RifQ are promising enough to justify further studies to confirm the potential of this compound as an anti-parkinsionian drug.