Microorganisms

Changes in Immune Sensors in COVID-19 and Long COVID: How the Virus Avoids Detection and New Immune-Based Treatments

Updated

Abstract

Essence

Pattern recognition receptor signaling may shape SARS-CoV-2 innate immunity, COVID-19 severity, , and immunotherapy strategies.

Evidence

Review synthesizes evidence on PRR expression and activation in SARS-CoV-2 infection, COVID-19 severity, long COVID, viral evasion, and PRR agonist or antagonist antiviral approaches.

Caveat

Because this is a review, PRR-targeted therapies remain investigational and the abstract identifies unresolved knowledge gaps in PRR-mediated responses.

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What this is

  • This review discusses the role of () in the immune response to SARS-CoV-2, the virus causing COVID-19.
  • are crucial for detecting the virus and initiating immune responses, including the production of interferons (IFNs).
  • The review also explores how SARS-CoV-2 evades PRR detection and the implications for treatment strategies.
  • Additionally, it addresses the connection between PRR activity and , highlighting potential therapeutic targets.

Essence

  • play a dual role in recognizing SARS-CoV-2 and triggering immune responses. While they can enhance antiviral defenses, excessive activation may lead to harmful inflammation, contributing to severe COVID-19 outcomes and .

Key takeaways

  • , including TLRs and RLRs, are essential for detecting SARS-CoV-2 and initiating the immune response. They trigger the production of type I and III IFNs, which help control viral replication.
  • SARS-CoV-2 employs various strategies to evade PRR recognition, such as modifying its RNA structure and inhibiting PRR signaling pathways. This evasion contributes to delayed immune responses and severe disease.
  • Increased expression of is linked to symptoms, suggesting that targeting these receptors may offer therapeutic benefits for managing persistent symptoms after acute infection.

Caveats

  • The review relies on existing literature, which may include biases and variability in study designs. Further research is needed to validate the findings and clarify the role of in COVID-19.
  • The review does not provide new experimental data, limiting its ability to draw definitive conclusions about PRR-targeted therapies.

Definitions

  • Pattern Recognition Receptors (PRRs): Molecules that detect pathogens like viruses and initiate immune responses, including the production of interferons.
  • Long COVID (LC): A condition where symptoms persist for weeks or months after the acute phase of a SARS-CoV-2 infection has resolved.

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Funding

Competing interests

0 of 12
authors report competing interests
12 report none
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