Publications des scientifiques de l'IRD

Ekchariyawat P., Hamel Rodolphe, Bernard E., Wichit S., Surasombatpattana P., Talignani L., Thomas F., Choumet V., Yssel H., Desprès P., Briant L., Missé Dorothée. (2015). Inflammasome signaling pathways exert antiviral effect against Chikungunya virus in human dermal fibroblasts. Infection, Genetics and Evolution, 32, p. 401-408. ISSN 1567-1348.

Titre du document
Inflammasome signaling pathways exert antiviral effect against Chikungunya virus in human dermal fibroblasts
Année de publication
2015
Type de document
Article
Auteurs
Ekchariyawat P., Hamel Rodolphe, Bernard E., Wichit S., Surasombatpattana P., Talignani L., Thomas F., Choumet V., Yssel H., Desprès P., Briant L., Missé Dorothée
Source
Infection, Genetics and Evolution, 2015, 32, p. 401-408 ISSN 1567-1348
Arboviruses represent an emerging threat to human. They are transmitted to vertebrates by the bite of infected arthropods. Early transmission to vertebrates is initiated by skin puncture and deposition of virus in this organ. However, events at the bite site remain largely unknown. Here, we report that Chikungunya virus (CHIKV) and West Nile virus (WNV), despite belonging to distinct viral families, elicit a common antiviral signature in primary human dermal fibroblasts, attesting for the up regulation of interferon signaling pathways and leading to an increased expression of IFN-β, interleukins and chemokines. Remarkably, CHIKV and WNV enhance IL-1β expression and induce maturation of caspase-1, indicating the capacity of these pathogens to elicit activation of the inflammasome program in resident skin cells. CHIKV and WNV also induce the expression of the inflammasome sensor AIM2 in dermal fibroblasts, whereas inhibition of caspase-1 and AIM2 with siRNA interferes with both CHIKV- and WNV-induced IL-1β production by these cells. Finally, inhibition of the inflammasome via caspase-1 silencing was found to enhance CHIKV replication in dermal fibroblasts. Together, these results indicate that the skin contributes to the pro-inflammatory and anti-viral microenvironment via the activation of the inflammasome in the early stages following infection with arboviruses.
Plan de classement
Epidémiologie des arbovirus [052CULARB03]
Localisation
Fonds IRD [F B010063775]
Identifiant IRD
fdi:010063775
Contact