Active Infection & Immunity Cancer

Utilising heterogeneities in the African HIV epidemic to address the HIV reservoir and immune dysfunction challenges to facilitate HIV cure

In plain English

AI plain-English summary

HIV reservoirs—hidden stores of virus in immune cells—keep the virus alive even when antiretroviral drugs suppress it, and this project will study how African populations naturally control those reservoirs to find new targets for a cure. Current HIV cure research has largely ignored the viral subtypes and immune backgrounds found in Africa, where the epidemic is most severe. Even people on effective treatment suffer from persistent immune dysfunction, raising their risk of other diseases. This project uses well-established African cohorts—covering diverse HIV subtypes, host genetics, and immune responses—to understand how the immune system keeps reservoirs in check. The team will focus on antibodies, interferon responses, and natural killer and CD8+ T cells as the most likely drivers of reservoir control. If successful, this work could identify immune-based therapies that shrink or silence HIV reservoirs, potentially leading to a functional cure or adjunctive treatments that reduce long-term health complications. Because the research is grounded in African populations and viral strains, any breakthroughs would be directly relevant to the regions hardest hit by the epidemic, while also informing global cure strategies.

View original technical description
HIV reservoirs, consisting of replication-competent proviral DNA in immune cells are the major barrier to HIV cure, necessitating lifelong antiretroviral treatment. Cure has been achieved in non-human primate models via early treatment followed by treatment interruption, combined with immunotherapy. Immune mechanisms can control the HIV reservoir, but the underlying mechanisms are poorly understood. Critically, cure research has not focused on the distinct African populations or the specific viral subtypes that are central to the HIV epidemic. Furthermore, even under effective treatment, immune dysfunction persists, resulting in higher comorbidities for all people living with HIV (PLWH). Adjunctive immunotherapies are needed to improve health outcomes for PLWH. Our goal here is to utilise the heterogeneity of the HIV African epidemic, represented by unique, well-pedigreed observational and interventional cohorts comprised of diverse HIV subtypes, host genetic and immune backgrounds, to understand how reservoirs are maintained, and controlled through immune mechanisms. We will focus here on humoral immunity, type I interferon responses and natural killer and CD8+ T cells as the most probable mediators of reservoir control. This work led in Africa will identify virus and immune therapeutic targets to facilitate HIV cure and/or adjunctive therapies that will benefit PLWH across the world.

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Researchers

Aime Marcel Simon Tongo Passo (EPMC Awardee)Damalie Nakanjako (EPMC Awardee)Edward Kankaka (EPMC Awardee)Ronald Galiwango (EPMC Awardee)Thumbi Ndung'u (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

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Original classification

Discovery Award

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