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COVID-19 human challenge study highlights small changes to memory and cognition

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Cognition and viral load of volunteers over study period. Cognitive Scores and Viral load. A) baseline-corrected cognitive scores and B) viral load during the baseline, quarantine phase and follow-up timepoints. Upper plots show individual volunteer data, ordered within-group by mean cognitive score across all phases. Lower plots show mean data for infected (green) and uninfected (grey) groups with error bars representing the standard error of the mean. Credit: eClinicalMedicine (2024). DOI: 10.1016/j.eclinm.2024.102842

A new analysis from Imperial’s human challenge study of COVID-19 has revealed subtle differences in the memory and cognition scores of healthy volunteers infected with SARS-CoV-2, which lasted up to a year after infection.

The researchers say all scores fell within expected normal ranges for healthy individuals and no one reported experiencing any lasting cognitive symptoms such as brain fog.

The findings, published in the journal eClinicalMedicine, show a small but measurable difference following highly intensive cognitive testing of 18 healthy young people with infection compared to those who did not become infected, monitored under controlled clinical conditions.

The team explains that incorporating such sensitive cognitive testing into future studies could help reveal more detailed insights into how infections may alter brain function and could help to find ways to reduce these processes when they cause symptoms.

Senior author Professor Adam Hampshire, from the Department of Brain Sciences at Imperial College London and now based at King’s College London, explained, “We know that COVID-19 can have lasting impacts on our memory and ability to carry out common cognitive tasks. However, much of the we have comes from large studies based on self-testing and reporting, or where there’s a range of variables that could increase or reduce these effects.

“Our work shows that these cognitive effects are replicated even under carefully controlled conditions in healthy individuals—including infection with a comparable dose of virus—and further highlights how respiratory infections can impact specific aspects of brain function.

“We were only able to detect some of these effects because of the trial design, which used very sensitive tests and controlled conditions, with participant performance compared to their own pre-inoculation baselines. This enabled us to pick up on subtle changes of which the participants themselves appear not to have been aware.”

COVID-19 and cognition

Previous studies that included patients with a wide range of severities have shown COVID-19 can have a lasting impact on people’s brain function. One such study, led by Imperial and involving more than 140,000 people, found small deficits in the performance of cognitive and memory tasks in people who had recovered from COVID-19, with differences evident a year or more after infection.

In the latest study, researchers analyzed findings from a small group of healthy volunteers who were part of the world’s first human challenge study for COVID-19 in 2021. The findings reveal subtle differences in how they performed on the same tests, which lasted up to 12 months although later testing could have been affected by other and later factors.

During the trial, 36 healthy, young participants with no previous immunity to the virus were infected with SARS-CoV-2 and monitored under controlled clinical conditions. They were carefully monitored and remained at the facility until they were no longer infectious. From the group, 18 participants became infected and developed mild illness, one without symptoms.

Participants also performed sets of tasks to measure multiple distinct aspects of their , including memory, planning, language and problem solving, using the Cognitron platform. Participants took the tests before exposure to the virus, during the two weeks they spent in the clinical facility, and then at multiple points for up to a year.

Analysis showed that those who became infected with SARS-CoV-2 had statistically lower cognitive scores than uninfected volunteers—compared to baseline scores—during their infection as well as during the follow-up period. The main differences in scores were seen in memory and executive function tasks (including working memory, attention and problem solving).

Differences in scores between groups were seen up to one year after infection, with the uninfected group performing slightly better on tasks overall.

The researchers note that the observed differences were small and that none of the volunteers reported prolonged cognitive symptoms. They also highlight limitations of the study, including the small sample size and that the majority of participants were white males, and so caution is needed in extrapolating the findings to the general population.

They explain that future research could examine the biological links between respiratory and cognition in COVID-19, and even show how this impact compares with other conditions, such as Respiratory syncytial virus (RSV) or influenza.

Co-author Professor Christopher Chiu, from the Department of Infectious Disease at Imperial College London, who led the COVID-19 human challenge study, said, “These latest findings from our study add more fine detail to the picture we have of COVID-19 and other respiratory infectious diseases.

“Challenge studies can offer a tool to help us better understand how infections disrupt a range of biological functions. Here, by showing biological effects that fall below what could be considered symptoms or disease, we were able to identify the smallest changes in these pathways.

“This could ultimately help us to develop new treatments to reduce or even block some of these effects, which we know on other settings can have lasting impacts on people’s lives.”

More information:
William Trender et al, Changes in memory and cognition during the SARS-CoV-2 human challenge study, eClinicalMedicine (2024). DOI: 10.1016/j.eclinm.2024.102842

Citation:
COVID-19 human challenge study highlights small changes to memory and cognition (2024, October 4)
retrieved 4 October 2024
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