Publication date: Aug 09, 2026
Chikungunya virus (CHIKV) causes severe acute and chronic disease, yet no approved specific antiviral treatment exists. To rapidly identify potential treatments, we aimed to screen an FDA-approved drug library for inhibitors of CHIKV infection. Tirbanibulin, a dual-microtubule polymerization and Src kinase inhibitor, was assessed for its potential anti-CHIKV activity. We performed a high-throughput screen of an FDA-approved drug library. Mechanism-of-action studies included entry-step analysis, surface plasmon resonance (SPR) binding assays and molecular docking. In vivo efficacy was evaluated in lethal murine neuroinfection and CHIKV-induced arthritis models following oral administration of the candidate compound. Tirbanibulin exhibited nanomolar to low-micromolar antiviral activity (EC range: 0. 035-75. 64 μM) across multiple cell lines, with high selective indices in key target HT22 and Huh7 cells. It acted at a post-attachment entry step, inhibiting clathrin-mediated endocytosis and potentially viral fusion. Surface plasmon resonance confirmed direct, high-affinity binding to the CHIKV E1 and E2 glycoprotein complex (K_D = 73 nM). In the lethal neuroinfection model, oral tirbanibulin significantly improved survival and reduced brain viral loads; in the arthritis model, it markedly attenuated footpad swelling and inflammatory pathology. Tirbanibulin is a novel, orally bioavailable entry-stage inhibitor that directly targets the E2 glycoprotein. Multiple preclinical and clinical studies have confirmed its favourable oral bioavailability and safety. Given its established clinical safety profile, it represents a promising repurposing candidate for clinical evaluation against Chikungunya fever.
| Concepts | Keywords |
|---|---|
| Fda | antiviral therapy |
| Nanomolar | Chikungunya virus |
| Novel | drug repurposing |
| Pathology | E2‐targeting |
| Viral | tirbanibulin (KX‐01, KX2‐391) |
| viral entry inhibitor |
Semantics
| Type | Source | Name |
|---|---|---|
| disease | MESH | chronic disease |
| disease | MESH | infection |
| disease | MESH | included |
| disease | MESH | arthritis |
| pathway | REACTOME | Clathrin-mediated endocytosis |
| disease | MESH | Chikungunya fever |