Active Infection & Immunity Brain & Nervous System

Interrogating Host-Pathogen Interactions during Fungal Meningitis

In plain English

AI plain-English summary

Cryptococcal meningitis turns the brain’s own immune cells into hiding places for the fungus that causes the disease. This infection was recently named the top priority fungal disease requiring urgent attention by the World Health Organisation, yet almost nothing was known about how immune responses are regulated in the brain during infection. The major immune cells resident in the brain are macrophages called microglia, and it was unclear whether these cells protect the brain or instead act as reservoirs that allow the fungus to persist. The lab has now shown that microglia are indeed an important reservoir for intracellular fungal infection, and that they actively shape the fungal population by driving changes in how the fungus scavenges nutrients. These interactions can be modulated by the protective cytokine IFNg. This is fundamental science with a clear translational hook. IFNg is already a promising immune-based therapy for cryptococcal meningitis, and understanding exactly how it exerts its protective effects in the brain could directly inform treatment strategies. If the research succeeds, it may help clinicians decide whether to boost microglial responses or block them, turning a hidden reservoir into a target for therapy.

View original technical description
My lab is focused on understanding the pathogenesis of the invasive fungal infection, cryptococcal meningitis, which was recently named as the number one priority fungal disease requiring urgent attention by the World Health Organisation. Despite that, there is little understood about how immune responses are regulated in the brain during this infection. The major immune cells resident in the brain are macrophages called microglia. It was not clear how these cells responded to Cryptococcus neoformans, the main causative agent of cryptococcal meningitis. It was also not known whether these cells play a protective or deleterious role during infection, since macrophages can act as intracellular infection reservoirs for this fungus, but the relevance of this in the brain had not been studied. We have shown that brain-resident immune cells called microglia are an important reservoir for intracellular fungal infection. Moreover, we have found that microglia are important drivers of heterogeneity within the fungal population by shaping their nutrient scavenging responses, and that these fungal-microglia interactions can be modulated by the protective cytokine IFNg. This is important, because IFNg is a promising immune-based therapy for cryptococcal meningitis and there is significant interest and translational potential in understanding how this cytokine exerts its protective effects in the brain.

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Researchers

Rebecca Drummond (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Fungi on the Brain: Interrogating Host-Pathogen Interactions during Fungal Meningitis
Role and Control of the Functional Specialisation of Microglia during Fungal Meningitis
Defining pathways of infection induced inflammation in the CNS
Dynamics of brain invasion by the pathogenic fungus Cryptococcus neoformans
Identifying the mechanism of intracellular parasitism by Cryptococcus

Original classification

Fellowship

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