Related Experiment Video
Updated: Oct 7, 2025

Using Human Differentially Expressed Gene Lists to Perform Downstream Pathway Enrichment Analysis and Target Prioritization
Published on: October 3, 2025
Repurposable drugs for SARS-CoV-2 and influenza sepsis with scRNA-seq data targeting post-transcription modifications
Zhihan Wang1, Kai Guo2, Pan Gao1
1Department of Biomedical Sciences, University of North Dakota School of Medicine and Health Sciences, Grand Forks, ND 58202, USA.
Abstract:
Coronavirus disease 2019 (COVID-19) has impacted almost every part of human life worldwide, posing a massive threat to human health. The lack of time for new drug discovery and the urgent need for rapid disease control to reduce mortality have led to a search for quick and effective alternatives to novel therapeutics, for example drug repurposing. To identify potentially repurposable drugs, we employed a systematic approach to mine candidates from U.S. FDA-approved drugs and preclinical small-molecule compounds by integrating gene expression perturbation data for chemicals from the Library of Integrated Network-Based Cellular Signatures project with a publicly available single-cell RNA sequencing dataset from patients with mild and severe COVID-19 (GEO: GSE145926, public data available and accessed on 22 April 2020). We identified 281 FDA-approved drugs that have the potential to be effective against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection, 16 of which are currently undergoing clinical trials to evaluate their efficacy against COVID-19. We experimentally tested and demonstrated the inhibitory effects of tyrphostin-AG-1478 and brefeldin-a, two chemical inhibitors of glycosylation (a post-translational modification) on the replication of the single-stranded ribonucleic acid (ssRNA) virus influenza A virus as well as on the transcription and translation of host cell cytokines and their regulators (IFNs and ISGs). In conclusion, we have identified and experimentally validated repurposable anti-SARS-CoV-2 and IAV drugs using a systems biology approach, which may have the potential for treating these viral infections and their complications (sepsis).
Insights
Drug repurposing offers a rapid strategy against COVID-19. This study identified 281 FDA-approved drugs and validated two inhibitors, tyrphostin-AG-1478 and brefeldin-a, for potential use against SARS-CoV-2 and influenza A virus.
Area of Science:
- Virology
- Drug Discovery
- Systems Biology
Background:
- The COVID-19 pandemic necessitates rapid therapeutic development.
- Drug repurposing presents a viable alternative to de novo drug discovery.
- Identifying effective repurposed drugs requires robust screening methodologies.
Purpose of the Study:
- To systematically identify U.S. FDA-approved drugs and small-molecule compounds for repurposing against SARS-CoV-2.
- To validate the efficacy of identified drug candidates using experimental methods.
- To explore potential treatments for viral infections and associated complications like sepsis.
Main Methods:
- Integrated gene expression perturbation data (LINCS L1000) with COVID-19 single-cell RNA sequencing data (GSE145926).
- Employed a systems biology approach to mine potential drug candidates.
- Experimentally tested the inhibitory effects of selected compounds on viral replication and host immune responses.
Main Results:
- Identified 281 FDA-approved drugs with potential efficacy against SARS-CoV-2.
- Found 16 of these drugs are already in clinical trials for COVID-19.
- Demonstrated inhibitory effects of tyrphostin-AG-1478 and brefeldin-a on influenza A virus replication and host cytokine responses.
Conclusions:
- A systems biology approach successfully identified and validated repurposed drugs for SARS-CoV-2 and influenza A virus.
- Tyrphostin-AG-1478 and brefeldin-a show promise for treating viral infections and sepsis.
- Repurposed drugs offer a rapid and effective strategy for combating viral pandemics.

