Dr. Keerthana Ramesh, Mechanisms That Deteriorate Immunity During COVID’19.
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Dr. Keerthana Ramesh

Myself Dr.Keerthana Ramesh, a Doctor of pharmacy graduate who has a keen interest in Clinical Research and clinical pharmacy activities.

Mechanisms That Deteriorate Immunity During COVID’19.

26 August 2020

In a major study, Australian researchers have identified mechanisms leading to the functional deterioration of the immune system in response to severe viral infections, such as HIV or Covid-19.
It is widely known that severe viral infections and cancer cause impairments to the immune system, including to T cells, a process called immune 'exhaustion'.

In a major study, Australian researchers have identified mechanisms leading to the functional deterioration of the immune system in response to severe viral infections, such as HIV or Covid-19. Also Read - China Facing 'Turbulent Change' as Global Markets Shut Doors Amid COVID-19

It is widely known that severe viral infections and cancer cause impairments to the immune system, including to T cells, a process called immune 'exhaustion'. Also Read - COVID-19: India’s Tally Crosses 31-Lakh Mark, Deaths at 58,390; Over 3.5 Crore Tested Under 'Test Track Treat' Strategy | Top Developments
For the findings, the research team focused on the question of when and how T cells lose their function and become 'exhausted'.

It was previously thought that during severe infections, T cells lost their function slowly and over long periods of time.

This research, however, shows that T cells can be impaired within just a few days. It also identified several new mediators of immune exhaustion that may be targeted in new therapies.

"We looked at both mild and overwhelming Lymphocytic Choriomeningitis Virus infections in mice, which serves as a model for severe viral infections in humans, early after the onset of disease, and identified striking differences at the molecular and functional level," Utzschneider said.

In response to overwhelming infections that are difficult to eliminate and may become chronic, the team were able to show that T cells down-regulate their function within days, while T cells responding to a weaker infection remained highly functional.

T cells are at the heart of immunotherapy for cancer. Therefore, understanding how a T cell function is impaired is central to improving these therapeutic approaches and applying them to other diseases, such as viral infections, they said.

"These findings are extremely exciting. Our data show that T cells could be manipulated during early stages of severe viral infection to improve their activity," the study authors noted.

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