Clinical development of the DB Fusion, a serotype-independent vaccine to prevent Shigella dysentery.
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AI plain-English summaryA single injection of a fusion protein could protect children in low-income countries against multiple species of the Shigella bacterium that cause severe diarrhoea. Current Shigella vaccines target the sugar molecules on the bacterial surface, but these differ between strains, requiring a cocktail of serotypes to achieve broad protection. This project instead targets two proteins, IpaD and IpaB, that are nearly identical across all Shigella species. These proteins sit on the bacterium’s injection needle—the Type III Secretion System—which it uses to inject toxins into human gut cells. By training the immune system to recognise these conserved proteins, the vaccine could block infection regardless of the bacterial strain. If successful, the vaccine would be given intradermally—into the skin—rather than orally. This matters because oral vaccines often fail in children in low-resource settings due to poor immune responses. The intradermal route also uses a smaller dose, stretching limited vaccine supplies. The team has already shown cross-species protection in animals. They now plan clinical trials to test safety and efficacy in humans, aiming to produce a single-dose vaccine for children in regions where shigellosis causes stunting, malnutrition, and death.
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