New! Sign up for our free email newsletter.
Science News
from research organizations

Containing the coronavirus effects on the nervous system

Research could prevent infection of nervous system cells by coronaviruses, such as the one responsible for COVID-19

Date:
March 23, 2021
Source:
Institut national de la recherche scientifique - INRS
Summary:
Researchers have identified ways to prevent the spread of infection within the central nervous system (CNS).
Share:
FULL STORY

A number of studies have shown that human coronaviruses, including SARS-CoV-2 which causes COVID-19, appear to attack neurons and the nervous system in vulnerable populations. This neuroinvasion through the nasal cavity leads to the risk of neurological disorders in affected individuals. Research conducted at the Institut national de la recherche scientifique (INRS) has identified ways to prevent the spread of infection within the central nervous system (CNS). The study, led by Professor Pierre Talbot and his research associate Marc Desforges, now at CHU-Sainte-Justine, was published in the Journal of Virology.

Antiviral immunity to human coronaviruses

The research team is the first to make the demonstration of a direct link between neurovirulence, protein S cleavage by cellular proteases and innate immunity. This antiviral immunity arises from the production of interferons, frontline proteins that help to detect early the presence of the virus.

"Using a common cold coronavirus, similar to SARS-CoV-2, we were able to show that cleavage of the S protein and interferon could prevent its spread to the brain and spinal cord in mice," says Talbot, who has been studying coronaviruses for nearly 40 years.

Two therapeutic approaches

According to Marc Desforges, currently a clinical specialist in medical biology at the CHU-Sainte-Justine virology laboratory, the cleavage of the S protein by various cellular proteases is essential for these viruses to effectively infect cells and spread to various organs and systems in the body, including the central nervous system (CNS).

"Our results demonstrate that interferon produced by different cells, including olfactory receptors and cerebrospinal fluid (CSF) producing cells in the brain, could modulate this cleavage. Thus, it could and does significantly limit the viral spread in the CNS and the severity of the associated disease," says the specialist who worked for 16 years as a research associate at the Armand-Frappier Health Biotechnology Centre of the IRNS.

Taken together, these results point to two potential antiviral targets: protein S cleavage and effective interferon-related innate immunity. "Understanding the mechanisms of infection and viral propagation in neuronal cells is essential to better design therapeutic approaches," says Talbot. This is especially important for vulnerable populations such as the elderly and immunocompromised." This discovery opens the door to new therapeutic strategies.

About the study

The article "Potential differences in cleavage of the S protein and type-1 interferon together control human coronavirus infection, propagation, and neuropathology within the central nervous system," by Alain Le Coupanec, Marc Desforges, Benedikt Kaufer, Philippe Dubeau, Marceline Côté and Pierre J. Talbot, was published in the Journal of Virology. The study was supported by the Canadian Institutes of Health Research (CIHR).


Story Source:

Materials provided by Institut national de la recherche scientifique - INRS. Original written by Audrey-Maude Vézina. Note: Content may be edited for style and length.


Journal Reference:

  1. Alain Le Coupanec, Marc Desforges, Benedikt Kaufer, Philippe Dubeau, Marceline Côté, Pierre J. Talbot. Potential differences in cleavage of the S protein and type-1 interferon together control human coronavirus infection, propagation, and neuropathology within the central nervous system. Journal of Virology, 2021; DOI: 10.1128/JVI.00140-21

Cite This Page:

Institut national de la recherche scientifique - INRS. "Containing the coronavirus effects on the nervous system." ScienceDaily. ScienceDaily, 23 March 2021. <www.sciencedaily.com/releases/2021/03/210323131225.htm>.
Institut national de la recherche scientifique - INRS. (2021, March 23). Containing the coronavirus effects on the nervous system. ScienceDaily. Retrieved October 31, 2024 from www.sciencedaily.com/releases/2021/03/210323131225.htm
Institut national de la recherche scientifique - INRS. "Containing the coronavirus effects on the nervous system." ScienceDaily. www.sciencedaily.com/releases/2021/03/210323131225.htm (accessed October 31, 2024).

Explore More

from ScienceDaily

RELATED STORIES