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Pathway-Based Mendelian Randomization for Pre-Infection IL-6 Levels Highlights Its Role in Coronavirus Disease
Zoha Kamali1,2, Nafiseh Esmaeil3,4, Chris H L Thio2
1Department of Bioinformatics, Isfahan University of Medical Sciences, Isfahan 81746-73441, Iran.
Insights
Pre-COVID-19 Interleukin 6 (IL-6) levels may influence severe COVID-19 risk. Lower genetically predicted IL-6 was associated with a reduced risk of severe disease, suggesting potential prognostic value.
Area of Science:
- Immunology
- Genetics
- Epidemiology
Background:
- Interleukin 6 (IL-6) is implicated in COVID-19 prognosis and treatment.
- The relationship between pre-existing IL-6 levels and severe COVID-19 risk is not well understood.
Purpose of the Study:
- To investigate the association between genetically predicted IL-6 pathway components and the risk of severe COVID-19.
- To explore potential pre-COVID-19 biomarkers for severe disease.
Main Methods:
- Two-sample Mendelian randomization study design.
- Utilized genetic instruments for IL-6, soluble IL-6 receptor, IL-6 signal transducer, and CRP from large GWASs.
- Analyzed data from Host Genetics Initiative and GenOMICC studies for COVID-19 outcomes.
Main Results:
- Inverse association found between genetically instrumented IL-6 levels and severe COVID-19 risk (OR = 0.60).
- Soluble IL-6 receptor showed an inverse association (OR = 0.94), while the soluble signal transducer showed a positive association (OR = 1.13).
- Only the association for IL-6 reached statistical significance for COVID-19 hospitalization and critical illness (p < 0.003).
Conclusions:
- Pre-COVID-19 IL-6 levels may have a causal relationship with severe COVID-19 risk.
- These findings suggest IL-6 could serve as a prognostic or preventive marker.
- Further research is needed to confirm these relationships and explore their relevance in other infectious diseases.
Objectives:
Interleukin 6 (IL-6) levels at hospital admission have been suggested for disease prognosis, and IL-6 antagonists have been suggested for the treatment of patients with severe COVID-19. However, less is known about the relationship between pre-COVID-19 IL-6 levels and the risk of severe COVID-19. To fill in this gap, here we extensively investigated the association of genetically instrumented IL-6 pathway components with the risk of severe COVID-19.
Methods:
We used a two-sample Mendelian randomization study design and retrieved genetic instruments for blood biomarkers of IL-6 activation, including IL-6, soluble IL-6 receptor, IL-6 signal transducer, and CRP, from respective large available GWASs. To establish associations of these instruments with COVID-19 outcomes, we used data from the Host Genetics Initiative and GenOMICC studies.
Results:
Our analyses revealed inverse associations of genetically instrumented levels of IL-6 and its soluble receptor with the risk of developing severe disease (OR = 0.60 and 0.94, respectively). They also demonstrated a positive association of severe disease with the soluble signal transducer level (OR = 1.13). Only IL-6 associations with severe COVID-19 outcomes reached the significance threshold corrected for multiple testing (p < 0.003; with COVID-19 hospitalization and critical illness).
Conclusions:
These potential causal relationships for pre-COVID-19 IL-6 levels with the risk of developing severe symptoms provide opportunities for further evaluation of these factors as prognostic/preventive markers of severe COVID-19. Further studies will need to clarify whether the higher risk for a severe disease course with lower baseline IL-6 levels may also extend to other infectious diseases.
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