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Published on: October 11, 2018
Predicting candidate biomarkers for COVID-19 associated with leukemia in children
Insights
Investigating the link between COVID-19 and pediatric leukemia, this study identifies IFIH1 and specific microRNAs as potential biomarkers for Acute Myeloid Leukemia (AML). Further research aims to develop predictive models for early cancer detection.
Area of Science:
- Immunology
- Genetics
- Oncology
Background:
- A rise in pediatric leukemia cases post-COVID-19 pandemic suggests a potential link.
- IFIH1 gene expression correlates with COVID-19 immunity in children, who generally have low leukemia risk.
Purpose of the Study:
- To identify potential biomarkers for pediatric leukemia by examining the role of IFIH1 and its regulatory microRNAs (miRNAs) in the context of COVID-19 infection.
- To construct a gene-miRNA targeting network to uncover genes associated with both COVID-19 and leukemia.
Main Methods:
- Analysis of TarBase database to identify miRNAs targeting IFIH1 and subsequent gene targets.
- Construction of a gene-miRNA targeting network.
- Protein-Protein Interaction (PPI) and DAVID/KEGG pathway analyses were performed.
- Co-expression analysis using TCGA RNA sequencing data for Acute Myeloid Leukemia (AML) samples.
Main Results:
- Identified two key miRNAs (hsa-196a-5p, hsa-196b-5p) and 51 highly expressed target genes in AML samples.
- IFIH1 was found to be highly correlated with STAT3 and identified as a potential biomarker for AML.
- Gene constellation analysis revealed significant correlations among candidate genes.
Conclusions:
- IFIH1 and specific miRNAs show promise as biomarkers for pediatric leukemia, particularly AML.
- The study provides a foundation for developing machine learning models to identify novel biomarkers and analyze comorbidities.
Abstract:
Since the COVID-19 pandemic, a significant number of pediatric leukemia patients have shown to have also contracted COVID-19 several weeks or months prior to the development of their cancer. Current research indicates the expression of MDA5, encoded by IFIH1, is associated with increased immunity to COVID-19 in children. Children are also known to have a much lower risk of developing leukemia. Our hypothesis is that IFIH1 and its regulatory miRNAs are biomarkers associated with pediatric leukemia; the objective of our study is to identify genes, through miRNA targeting mechanisms, which may be biomarkers associated with COVID-19 infection and leukemia. The database TarBase was analyzed to identify miRNAs that target IFIH1, followed by the identification of other genes regulated by IFIH1's targeting miRNAs, to construct a gene-miRNA targeting network. Protein-Protein Interaction (PPI) analysis and DAVID/KEGG pathway analysis were conducted to identify genes with meaningful biological interactions and pathways. We identified two significant miRNAs, hsa-196a-5p and hsa-196b-5p, and 51 of their targeted and highly expressed genes reported in the Acute Myeloid Leukemia (AML) samples from The Cancer Genome Atlas (TCGA) RNA sequencing database. When conducting additional analysis using the Gene Constellation module of the Immunological Genome Project for the top three candidate genes, several other genes were identified to be highly correlated with STAT3 and IFIH1 in our study. Based on our investigation into co-expression analysis, we found that IFIH1 is a potential biomarker for AML. We are expanding our work to create a machine learning model to identify other biomarkers, examine the significance of various parameters (age, race, etc.), and perform comorbidity network analysis for other potential genes/miRNAs.
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