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Contact-Free Co-Culture Model for the Study of Innate Immune Cell Activation During Respiratory Virus Infection
Published on: February 28, 2021
A new perspective for mitigation of SARS-CoV-2 infection: priming the innate immune system for viral attack
Oren Kolodny1, Michael Berger2, Marcus W Feldman3
1Department of Ecology, Evolution and Behavior, Alexander Silberman, Institute of Life Sciences, The Hebrew University of Jerusalem, 9190401 Jerusalem, Israel.
Abstract:
The course of infection by SARS-CoV-2 frequently includes a long asymptomatic period, followed in some individuals by an immune dysregulation period that may lead to complications and immunopathology-induced death. This course of disease suggests that the virus often evades detection by the innate immune system. We suggest a novel therapeutic approach to mitigate the infection's severity, probability of complications and duration. We propose that priming an individual's innate immune system for viral attack shortly before it is expected to occur may allow pre-activation of the preferable trajectory of immune response, leading to early detection of the virus. Priming can be carried out, for example, by administering a standard vaccine or another reagent that elicits a broad anti-viral innate immune response. By the time that the expected SARS-CoV-2 infection occurs, activation cascades will have been put in motion and levels of immune factors needed to combat the infection will have been elevated. The infection would thus be cleared faster and with less complication than otherwise, alleviating adverse clinical outcomes at the individual level. Moreover, priming may also mitigate population-level risk by reducing need for hospitalizations and decreasing the infectious period of individuals, thus slowing the spread and reducing the impact of the epidemic. In view of the latter consideration, our proposal may have a significant epidemiological impact even if applied primarily to low-risk individuals, such as young adults, who often show mild symptoms or none, by shortening the period during which they unknowingly infect others. The proposed view is, at this time, an unproven hypothesis. Although supported by robust bio-medical reasoning and multiple lines of evidence, carefully designed clinical trials are necessary.
Insights
Priming the innate immune system before SARS-CoV-2 infection may enhance early viral detection and reduce disease severity. This strategy could mitigate individual complications and slow epidemic spread by shortening infectious periods.
Area of Science:
- Immunology
- Virology
- Infectious Diseases
Background:
- SARS-CoV-2 infections often feature a prolonged asymptomatic phase, allowing immune evasion.
- Subsequent immune dysregulation can lead to severe complications and fatal outcomes.
- Current understanding suggests the virus frequently evades the innate immune system's early detection.
Purpose of the Study:
- To propose a novel therapeutic strategy for mitigating SARS-CoV-2 infection severity and duration.
- To explore the potential of innate immune system priming to enhance early viral detection.
- To reduce complications, immunopathology, and adverse clinical outcomes associated with SARS-CoV-2.
Main Methods:
- The study proposes a hypothesis for pre-emptive innate immune system priming.
- Priming could involve administering standard vaccines or other reagents inducing broad anti-viral responses.
- This approach aims to pre-activate immune response trajectories before expected viral exposure.
Main Results:
- Priming may lead to faster SARS-CoV-2 clearance and fewer complications.
- Elevated immune factors and activated cascades are expected upon infection.
- This could alleviate adverse clinical outcomes at the individual level.
Conclusions:
- Innate immune system priming is a potential strategy to combat SARS-CoV-2.
- The approach may reduce hospitalizations and shorten infectious periods, impacting epidemic spread.
- Further clinical trials are necessary to validate this hypothesis.
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