PsyPost
  • Mental Health
  • Social Psychology
  • Cognitive Science
  • Neuroscience
  • About
No Result
View All Result
Join
My Account
PsyPost
No Result
View All Result
Home Exclusive COVID-19

Long COVID study suggests lost connections between neurons may explain cognitive symptoms

by Samudyata and Carl Sellgren
November 13, 2022
Reading Time: 3 mins read
(Photo credit: ZEISS Microscopy)

(Photo credit: ZEISS Microscopy)

Share on TwitterShare on Facebook

For a portion of people who get COVID, symptoms continue for months or even years after the initial infection. This is commonly referred to as “long COVID”.

Some people with long COVID complain of “brain fog”, which includes a wide variety of cognitive symptoms affecting memory, concentration, sleep and speech. There’s also growing concern about findings that people who have had COVID are at increased risk of developing brain disorders, such as dementia.

Scientists are working to understand how exactly a COVID infection affects the human brain. But this is difficult to study, because we can’t experiment on living people’s brains. One way around this is to create organoids, which are miniature organs grown from stem cells.

In a recent study, we created brain organoids a little bigger than a pinhead and infected them with SARS-CoV-2, the virus that causes COVID-19.

In these organoids, we found that an excessive number of synapses (the connections between brain cells) were eliminated – more than you would expect to see in a normal brain.

Synapses are important because they allow neurons to communicate with each other. Still, the elimination of a certain amount of inactive synapses is part of normal brain function. The brain essentially gets rid of old connections when they’re no longer needed, and makes way for new connections, allowing for more efficient functioning.

One of the crucial functions of the brain’s immune cells, or microglia, is to prune these inactive synapses.

The exaggerated elimination of synapses we saw in the COVID-infected models could explain why some people have cognitive symptoms as part of long COVID.

Google News Preferences Add PsyPost to your preferred sources

Parallels with neurodegenerative disorders

Interestingly, this pruning process is believed to go awry in several disorders affecting the brain. In particular, excessive elimination of synapses has recently been linked to neurodevelopmental disorders such as schizophrenia, as well as neurodegenerative disorders such as Alzheimer’s and Parkinson’s disease.

By sequencing the RNA of single cells, we could study how different cell types in the organoid responded to the virus. We found that the pattern of genes turned on and off by the microglia in our COVID-infected organoids mimicked changes seen in neurodegenerative disorders.

This may go some way in explaining the link between COVID and the risk of developing certain neurological disorders.

A possible target for treatment

One limitation of our research is that our organoid models closely resemble the foetal or early brain, rather than the adult brain. So we can’t say for sure whether the changes we noted in our study will necessarily be reflected in the adult brain.

However, some post-mortem and imaging studies report neuronal death and reduction in grey matter thickness in COVID patients, which hints at similar instances of synapse loss caused by an infection in adults.

If this proves to be a fruitful line of enquiry, we believe our findings could point to a mechanism contributing to persisting cognitive symptoms after COVID and other viral infections that affect the brain.

SARS-CoV-2 is an RNA virus and similar processes have been seen in mice infected with other RNA viruses that can also cause residual cognitive symptoms, such as the West Nile virus.

From here we want to study how different drugs could inhibit the changes we saw in the infected models, hopefully paving the way towards effective treatments. In other research, we’ve observed that an antibiotic called minocycline can reduce the degree to which microglia prune synapses in a dish. So we want to see if this drug can help in our brain organoid models following SARS-CoV-2 infection.The Conversation

 

This article is republished from The Conversation under a Creative Commons license. Read the original article.

TweetSendScanShareSendPin4ShareShareShareShareShare

Follow PsyPost

The latest research, however you prefer to read it.

Daily newsletter

One email a day. The newest research, nothing else.

Google News

Get PsyPost stories in your Google News feed.

Add PsyPost to Google News
RSS feed

Use your favorite reader.

Copy RSS URL
Social media
Support independent science journalism

Ad-free reading, full archives, and weekly deep dives for members.

Become a member

Trending

  • How five psychological traits predict a person’s breaking point
  • Remembering a chaotic childhood is linked to psychopathic traits, especially in men
  • The “ADHD advantage” in entrepreneurship applies mostly to intelligent men, study finds
  • Creatine supplements show potential for managing major depressive disorder
  • Long COVID symptoms linked to measurable damage in the brain’s dopamine system

Science of Money

  • Shareholder support for women directors shrinks in religious and conservative corporate hometowns
  • A lab experiment reveals a hidden bias against artificial agents
  • When housing booms lift spending, only landlords seem to notice
  • Overconfident CEOs are linked to bumpier inventory swings, study finds
  • A gap in financial honesty may matter more than the amount hidden

Recent

  • Men with atypical testosterone levels face a higher risk of depression
  • Parental high-fat diets leave lasting marks on offspring brain development
  • Eye tracking reveals the hidden power of painted hands
  • Body dysmorphia is linked to an exaggerated cognitive bias for self-related information
  • Migraines are linked to accelerated brain aging in regions tied to memory and emotion
  • New study reveals how culture shapes our attraction to people who flaunt their wealth
  • Unconscious narcissism is linked to an avoidance of forgiveness
  • Scientists discover new insights into how mindfulness practices shift the brain’s neural landscape
  • GLP-1 drugs like Ozempic might help clear Alzheimer’s disease plaques, new review suggests
  • How the fear of being single alters modern dating choices

PsyPost is a psychology and neuroscience news website dedicated to reporting the latest research on human behavior, cognition, and society. (READ MORE...)

  • Mental Health
  • Neuroimaging
  • Personality Psychology
  • Social Psychology
  • Artificial Intelligence
  • Cognitive Science
  • Psychopharmacology
  • Contact us
  • Disclaimer
  • Privacy policy
  • Terms and conditions

(c) PsyPost Media Inc

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In

Add New Playlist

Subscribe
  • My Account
  • Cognitive Science Research
  • Mental Health Research
  • Social Psychology Research
  • Drug Research
  • Relationship Research
  • About PsyPost
  • Contact
  • Privacy Policy

(c) PsyPost Media Inc