Recently published results from a large multi-country study found that pooled tuberculosis (TB) testing could greatly reduce costs and boost access to diagnosis. Access to the gold standard of rapid molecular testing is limited—only just over half of people diagnosed with TB in 2024 were first tested using the technology. Instead, they were diagnosed using older technology, which can take weeks to produce results, during which the infection could progress or be transmitted to others. Millions of additional individuals with TB go completely undiagnosed. A major contributing challenge is that rapid molecular testing requires an expensive diagnostic cartridge for each sample. Pooled testing involves testing samples from multiple individuals with one cartridge. Patients are only retested individually if the result is positive. Unlike new diagnostic technologies, like AI-enabled portable X-ray machines, that are promising but would require additional funding to implement, pooled testing could be scaled up rapidly without new funding because it utilizes technologies that many labs already have.
Medicines for Malaria Venture (MMV) is advancing the novel, first-in-class antimalarial compound, cabamiquine, into the next stage of clinical development, with the hope that the compound could be part of a single-dose, long-acting treatment for the prevention and treatment of malaria, which could greatly simplify care compared to current options. Cabamiquine was discovered by researchers at the University of Dundee, with financial and scientific support from MMV, and then advanced by Merck to proof of concept. Recently published results from two Phase 2a trials showed that a regimen of cabamiquine and pyronaridine was able to clear uncomplicated Plasmodium falciparum malaria in more than 90 percent of participants and demonstrated a strong safety profile. MMV will now lead Phase 2b clinical development of the compound.
The Biomedical Advanced Research and Development Partnership (BARDA) recently announced that it has awarded Scynexis a $214 million contract for the development of an antifungal to treat and prevent invasive fungal infections, the less common but more serious form of fungal infection that penetrates deep into the tissues of the body. Fungal infections are a growing global challenge, but there is a significant gap in the pipeline of new tools to address them. Last year, the company reported positive findings from a Phase 1 trial of an oral dose of the candidate and is currently conducting a Phase 1 trial of an intravenous formulation. The award includes initial funding to advance the company’s antifungal candidate into Phase 2 trial, with an option for additional, longer-term funding.