bioRxiv · 10.1101/2025.06.18.660279
Cis-aconitate therapy protects against influenza mortality by dual targeting of viral polymerase and ERK/AKT/NF-κB signaling
Abstract
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.
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Cezard, A., Diakite, D., Vasseur, V., Wacquiez, A., Gonzalez, L., Le Goffic, R., Da Costa, B., FOUQUENET, D., Heumel, S., Machelart, A., Hoffmann, E., Brodin, P., Trottein, F., Mathieu, C., Canus, L., Jacolin, F., Vidalain, P.-O., Perrin-Cocon, L., Lotteau, V., Tertigas, D., Burlaud-Gaillard, J., Surette, M. G., Legras, A., Sizaret, D., Baranek, T., Paget, C., Guillon, A., Si-Tahar, M.. 2025-06-24. Cis-aconitate therapy protects against influenza mortality by dual targeting of viral polymerase and ERK/AKT/NF-κB signaling. https://doi.org/10.1101/2025.06.18.660279
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