Summary Influenza A virus (IAV) remains a major threat to human and animal health, while the emergence of drug-resistant strains necessitates new antiviral strategies. Here, we developed an integrative host-directed drug discovery framework combining functional genomics and pharmacotranscriptomics. By aggregating published genome-wide screens, we assigned host genes functional scores reflecting their effects on IAV replication and used these scores to estimate the antiviral status of host cells. Screening nearly 20,000 drug-induced transcriptional signatures identified compounds that shift host gene expression toward an antiviral state. Among 54 selected hits, 18 showed anti-IAV activity. Notably, lithocholic acid and ALW-II-49-7 inhibited viral replication in vitro and protected mice from lethal infection in vivo. This host-targeted framework provides a systematic and scalable strategy for discovering antivirals that are less susceptible to resistance and potentially applicable to other rapidly evolving pathogens.
Jianfa Qiu, Xuecong Xing, Jing-Feng Wang et al.· iScience· 0 citations
The objective was to elucidate the molecular mechanisms through which exercise confers anti-aging effects and mitigates degenerative functional decline by restoring mitochondrial homeostasis.
Zhuoyang Zhou, Jianhong Gao, Minghui Wang et al.· iScience· 0 citations
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