Last week, the World Health Organization (WHO) prequalified multi-dose vials of the maternal vaccine against respiratory syncytial virus (RSV), enabling rollout in lower-income countries. RSV poses a severe global threat, especially for children under five and newborns, in particular. The Gates Foundation supported the development of a multi-dose version of Pfizer’s Abrysvo maternal RSV vaccine, which is administered to pregnant people in their third trimester, protecting newborns against infection and greatly reducing babies’ risk of being hospitalized with RSV. Multi-dose vials simplify the logistics of vaccination, allowing health care professionals to vaccinate more people with fewer vials, which need to be stored and transported in ultra-cold conditions. The prequalification now enables international organizations, like Gavi, the Vaccine Alliance, which has already put implementation plans in place, to procure them for rollout in low-income countries.
A research team has developed a nanobody-based antivenom that could provide a more flexible and effective approach for treating snakebites, which kill tens of thousands of people globally and disable hundreds of thousands more. Traditional venom is made by processing antibody-filled blood from horses injected with small doses of venom, but the quality of these antivenoms can vary, they can cause severe allergic reactions, they are expensive to produce, and they offer inconsistent protection across snakebites from different species. Nanobodies, tiny versions of antibodies, can move through tissue more quickly and reach venom before it can cause permanent damage. In a new study, all mice treated with the nanobody-based treatment survived. The treatment also prevented the most severe effects of the venom, is not expected to cause unwanted side effects, and remained intact at high temperatures, which is key in the resource-constrained rural settings that face heightened risk. Further studies will be needed to optimize the dose and ensure safety and efficacy in humans, but the study suggests that nanobody-based antivenoms could be a promising approach for further study.
Immunoscript Life Science will receive up to $8.9 million from the Coalition for Epidemic Preparedness Innovations (CEPI) to further development of its thermostable next-generation self-amplifying RNA (saRNA) vaccine platform, which could help improve access to RNA vaccines globally. mRNA vaccines have demonstrated significant promise as a tool against emerging disease threats because of the speed, flexibility, and adaptability with which they can be produced, but their requirement for ultra-cold temperatures for storage and transportation has proven a barrier to access in low-resource and remote settings. The saRNA vaccine platform, now owned by Immunoscript, is an alternative technology that could help overcome challenges associated with the cold chain. With CEPI’s funding, the company will conduct an early-stage trial in people in India to assess the safety and immune response of the technology.