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Published on: June 12, 2021
Concurrent infections of cells by two pathogens can enable a reactivation of the first pathogen and the second
1San Jose, California, USA.
Abstract:
When multiple intracellular pathogens, such as viruses, bacteria, fungi and protozoan parasites, infect the same host cell, they can help each other. A pathogen can substantially help another pathogen by disabling cellular immune defenses, using non-coding ribonucleic acids and/or pathogen proteins that target interferon-stimulated genes and other genes that express immune defense proteins. This can enable reactivation of a latent first pathogen and accelerate T-cell exhaustion and/or T-cell suppression regarding a second pathogen. In a worst-case scenario, accelerated T-cell exhaustion and/or T-cell suppression regarding the second pathogen can impair T-cell functionality and allow a first-time, immunologically novel second pathogen infection to escape all adaptive immune system defenses, including antibodies. The interactions of herpesviruses with concurrent intracellular pathogens in epithelial cells and B-cells, the interactions of the human immunodeficiency virus with Mycobacterium tuberculosis in macrophages and the interactions of Toxoplasma gondii with other pathogens in almost any type of animal cell are considered. The reactivation of latent pathogens and the acceleration of T-cell exhaustion for the second pathogen can explain several puzzling aspects of viral epidemics, such as COVID-19 and their unusual comorbidity mortality rates and post-infection symptoms.
Insights
Multiple intracellular pathogens can cooperate by weakening host defenses, aiding each other
Area of Science:
- Immunology
- Microbiology
- Virology
Background:
- Intracellular pathogens can co-infect a host cell.
- Co-infection can lead to synergistic effects between pathogens.
Purpose of the Study:
- To explore how co-infecting intracellular pathogens interact.
- To understand the mechanisms by which pathogens facilitate each other's survival and virulence.
Main Methods:
- Review of existing literature on pathogen interactions.
- Analysis of molecular mechanisms of immune evasion.
- Case studies of specific co-infections (e.g., herpesviruses, HIV/M. tuberculosis, Toxoplasma gondii).
Main Results:
- Pathogens disable host immune defenses using non-coding RNAs and proteins.
- This aids reactivation of latent pathogens and accelerates T-cell exhaustion/suppression.
- Impaired T-cell function can allow novel pathogen infections to evade immune responses.
Conclusions:
- Pathogen co-infection significantly impacts host immunity.
- Mechanisms of immune evasion and T-cell dysfunction are key.
- These interactions may explain complex aspects of viral epidemics like COVID-19, including mortality and symptoms.
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