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Published on: February 16, 2022
Identification of PBMC-based molecular signature associational with COVID-19 disease severity
Hibah Shaath1,2, Nehad M Alajez1,2
1College of Health & Life Sciences, Hamad Bin Khalifa University (HBKU), Qatar Foundation (QF), Doha, Qatar.
Insights
Identifying blood biomarkers is crucial for understanding COVID-19 severity. This study found specific mRNA and lncRNA biomarkers linked to disease severity and suppressed immune responses in severe cases, suggesting interferon therapy as a potential treatment.
Area of Science:
- Genomics and Bioinformatics
- Immunology
- Infectious Diseases
Background:
- The COVID-19 pandemic's impact underscores the need for biomarkers predicting disease severity.
- Understanding molecular differences between severe and mild COVID-19 is critical for effective treatment.
Purpose of the Study:
- To identify blood-based mRNA and long noncoding RNA (lncRNA) biomarkers associated with COVID-19 severity.
- To analyze the impact of these biomarkers on cellular functions and immune responses.
- To explore potential therapeutic strategies for severe COVID-19.
Main Methods:
- Computational and transcriptome analysis of peripheral blood mononuclear cells (PBMCs) from 126 patients.
- Utilized Gencode V33 assembly for mRNA and lncRNA analysis.
- Compared patient groups: COVID-19 ICU, COVID-19 non-ICU, non-COVID-19 ICU, non-COVID-19 non-ICU.
Main Results:
- Identified aberrantly expressed mRNA and lncRNA biomarkers linked to SARS-CoV-2 severity.
- Observed significantly suppressed immune, interferon, and antiviral responses in ICU COVID-19 patients.
- Biomarkers affected canonical, upstream, and disease-specific functions.
Conclusions:
- Specific mRNA and lncRNA biomarkers are associated with COVID-19 severity.
- Severe COVID-19 involves suppressed immune and interferon pathways.
- Interferon therapy is a potential therapeutic avenue for severe COVID-19 patients.
Abstract:
The longevity of COVID-19 as a global pandemic, and the devastating effects it has had on certain subsets of individuals thus far has highlighted the importance of identifying blood-based biomarkers associated with disease severity. We employed computational and transcriptome analyses of publicly available datasets from PBMCs from 126 patients with COVID-19 admitted to ICU (n = 50), COVID-19 not admitted to ICU (n = 50), non-COVID-19 admitted to ICU (n = 16) and non-COVID-19 not admitted to ICU (n = 10), and utilized the Gencode V33 assembly to analyze protein coding mRNA and long noncoding RNA (lncRNA) transcriptomes in the context of disease severity. Our data identified several aberrantly expressed mRNA and lncRNA based biomarkers associated with SARS-CoV-2 severity, which in turn significantly affected canonical, upstream, and disease functions in each group of patients. Immune, interferon, and antiviral responses were severely suppressed in COVID-19 patients admitted to ICU versus those who were not admitted to ICU. Our data suggests a possible therapeutic approach for severe COVID-19 through administration of interferon therapy. Delving further into these biomarkers, roles and their implications on the onset and disease severity of COVID-19 could play a crucial role in patient stratification and identifying varied therapeutic options with diverse clinical implications.
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