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FOUQUENET, D.

Publications and source records attributed to FOUQUENET, D..

2 recordsLinked to original sources

Cis-aconitate therapy protects against influenza mortality by dual targeting of viral polymerase and ERK/AKT/NF-κB signaling

Influenza virus poses a significant global health challenge, causing approximately 500,000 deaths annually. Its ability to evade antiviral treatments and vaccine-induced immunity underscores the need for novel therapeutic approaches. Our study identifies cis-aconitate (cis-aco), a mitochondria-derived metabolite, as a potent dual-action agent against influenza, independently of its metabolic derivative, itaconate. Cis-aco impairs viral polymerase activity, suppressing viral mRNA expression and protein synthesis to inhibit replication across a range of influenza subtypes. This antiviral efficacy is confirmed in ex vivo human airway and lung organotypic models. Beyond its antiviral properties, cis-aco exhibits potent anti-inflammatory effects, disrupting key inflammatory cascades and reducing the secretion of inflammatory mediators. In a mouse model of influenza pneumonia, cis-aco mitigates viral replication, inflammation, and immune cell activation, significantly improving survival. Notably, its efficacy persists even when administered at later stages of infection, when oseltamivir/Tamiflu(R) is no longer effective. These findings position cis-aco as a promising influenza treatment, combining antiviral and anti-inflammatory benefits within a clinically relevant timeframe.

immunology↗

Elexacaftor/tezacaftor/ivacaftor (Trikafta(R)) does not affect the growth of Aspergillus fumigatus in vitro

Fungal infection, especially allergic bronchopulmonary aspergillosis, is a leading cause of infection-associated morbidity and death in patients with cystic fibrosis. We have previously discovered that the new leading therapeutic treatment in cystic fibrosis, CFTR modulators Elexakaftor/Tezacaftor/Ivacaftor (ETI, Trikafta(R)), drastically reduces the colonization and infection by Aspergillus fumigatus. However, the reasons for this decrease in patients are not known so far. In this study we have shown, using A. fumigatus reference strains and strains isolated from patients with cystic fibrosis, that CFTR modulators have no discernable impact on fungal growth in vitro. These results are consistent regardless of drugs concentration, demonstrating that treatment does not exert a direct antimicrobial or stimulatory effect in vitro on A. fumigatus conidia growth, when exposed to actual in vivo CFTR modulators concentration.

microbiology↗