Active Infection & Immunity Pregnancy, Children & Inherited Conditions

Serological testing and treatment for p. Vivax: From a cluster-randomised trial in ethiopia and madagascar to a mobile-technology supported intervention

In plain English

AI plain-English summary

A simple blood test could identify the 80% of people carrying hidden liver-stage malaria parasites who currently go undetected and untreated. The problem is *Plasmodium vivax*, a malaria species that conventional rapid tests miss because they only detect parasites in the bloodstream. The parasites can lie dormant in the liver as hypnozoites, causing relapses months later and sustaining transmission. Current options are either ineffective testing or blanket treatment with primaquine, a drug that can cause dangerous side effects in people with G6PD deficiency. This project will run a cluster-randomised trial in Ethiopia and Madagascar to test whether serological testing—measuring antibody responses that correlate with hypnozoite carriage—can safely target treatment to those who actually need it. If the approach works, it could give malaria elimination programmes a practical tool to break *P. vivax* transmission without exposing entire populations to unnecessary drug risk. The project also develops mobile technology that links point-of-care diagnostic results directly to treatment decisions, and assesses whether communities and health systems will accept and adopt this new workflow. The research is built on equal partnership between UK and African institutions, with the explicit goal of reducing morbidity in two countries with the highest *P. vivax* burden in Africa.

View original technical description
Plasmodium vivax (P. vivax) is considered the most difficult human malaria to eliminate because of the inability of conventional diagnostics to detect individuals with latent liver forms. These individuals account for 80% of all infections and can readily infect mosquitoes. Currently countries can test knowing this has little impact or treat everyone which exposes individuals to drugs with potentially dangerous side effects. Parasite specific antibody responses have been shown to correlate with the likelihood of hypnozoite carriage and can be used to identify individuals who should be treated. The project aim is to implement a Cluster-Randomised Trial in Ethiopia and Madagascar to demonstrate the effectiveness of a new anti-malaria intervention based on P. vivax serological testing and treatment (PvSTATEM) with primaquine to prevent the relapse infections responsible for maintaining P. vivax transmission. Simultaneously, it will assess social and health system acceptability of such an approach as well as refine new mobile technologies which interface with point-of-care diagnostic tests and guide treatment decisions. The overarching aim to reduce malaria burden at both the individual and population level in two countries which experience the highest levels of P.vivax in Africa with the expectation of having a significant effect in reducing morbidity and improving health. It will ensure community engagement and assess the adoption of new technologies that align with those existing in the health system. The proposal is built on equal partnership and shared capacity to address a substantial public health burden.

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Related Research

Grants with similar aims, by meaning.

A point-of-care serological rapid diagnostic test for risk of plasmodium vivax hypnozoite infection (pvserordt)
Mass drug administration of ivermectin and dihydroartemisinin-piperaquine as an additional intervention for malaria elimination
Randomized trial of spatially targetted control to virtually eliminate malaria
Roll out the radical cure with primaquine for vivax elimination: development grant
Reactive household-based self-administered treatment against residual malaria transmission: a cluster randomised trial

Original classification

EU-Funded

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