<p>This study aimed to identify miRNA-based biomarkers in a multi-ethnic cohort of SARS-CoV-2-infected individuals to enhance preparedness for future variants of concern. A total of 31 healthy controls and 154 infected patients were enrolled, from which 13 matched controls and 38 infected nasal swab samples were analyzed using miRNA sequencing, followed by qRT-PCR validation. Among the 1788 miRNAs detected, 14 differentially expressed miRNAs and four novel miRNAs were identified, with novel-miR-264-5p showing a ≥ 2-fold change. Correlation with clinical markers highlighted several miRNAs as potential prognostic biomarkers. Seven miRNAs, including miR-146b-3p, miR-154-5p, miR-5010-3p, miR-127-3p, miR-335-3p, miR-30c-5p, and miR-202-5p, showed strong prognostic potential. Combined ROC analysis demonstrated that a panel of top-performing miRNAs significantly enhanced diagnostic accuracy (AUC 0.939–0.972; <i>p</i> &lt; 0.0001). Moreover, integrating miRNA biomarkers with clinical parameters further improved performance (AUC = 0.982; <i>p</i> &lt; 0.0001). miR-146b-3p, detected exclusively in infected patients, emerged as a highly specific biomarker. Several nasal miRNAs mirrored blood profiles, highlighting the utility of nasal swabs for non-invasive monitoring. Collectively, these findings suggest that miRNA-based biomarkers, alone or combined with clinical markers, offer a promising platform for COVID-19 prognosis and diagnosis, and lay groundwork for future miRNA-based antiviral strategies.</p>

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miRNA biomarkers for prognosis and therapy monitoring in a multi-ethnic cohort with SARS-CoV-2 infection

  • Farah Mustafa,
  • Waqar Ahmad,
  • Bushra Gull,
  • Jasmin Baby,
  • Neena G. Panicker,
  • Thanumol Abdul Khader,
  • Hala Abdul Baki,
  • Erum Rehman,
  • Asif M. Salim,
  • Rubina L. G. Ahmed,
  • Hamda H. Khansaheb,
  • Maya Habous,
  • Laila M. J. A. AlDabal,
  • Soumeya Jaballah,
  • Saif S. Alqassim,
  • Alawi Alsheikh-Ali,
  • Tahir A. Rizvi

摘要

This study aimed to identify miRNA-based biomarkers in a multi-ethnic cohort of SARS-CoV-2-infected individuals to enhance preparedness for future variants of concern. A total of 31 healthy controls and 154 infected patients were enrolled, from which 13 matched controls and 38 infected nasal swab samples were analyzed using miRNA sequencing, followed by qRT-PCR validation. Among the 1788 miRNAs detected, 14 differentially expressed miRNAs and four novel miRNAs were identified, with novel-miR-264-5p showing a ≥ 2-fold change. Correlation with clinical markers highlighted several miRNAs as potential prognostic biomarkers. Seven miRNAs, including miR-146b-3p, miR-154-5p, miR-5010-3p, miR-127-3p, miR-335-3p, miR-30c-5p, and miR-202-5p, showed strong prognostic potential. Combined ROC analysis demonstrated that a panel of top-performing miRNAs significantly enhanced diagnostic accuracy (AUC 0.939–0.972; p < 0.0001). Moreover, integrating miRNA biomarkers with clinical parameters further improved performance (AUC = 0.982; p < 0.0001). miR-146b-3p, detected exclusively in infected patients, emerged as a highly specific biomarker. Several nasal miRNAs mirrored blood profiles, highlighting the utility of nasal swabs for non-invasive monitoring. Collectively, these findings suggest that miRNA-based biomarkers, alone or combined with clinical markers, offer a promising platform for COVID-19 prognosis and diagnosis, and lay groundwork for future miRNA-based antiviral strategies.