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March 21, 2026Journal of General Virology0 citationsOpen Access

Decoding the antiviral potential of eugenol, thymol and vanillin against human cytomegalovirus infection

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CMClara Martín-MartínUniversidad Nacional de Educación a DistanciaMRMaría Teresa Ruiz-RicoUniversitat Politècnica de ValènciaJBJose Manuel BaratUniversitat Politècnica de València

Key Points

  • This research aims to assess the antiviral efficacy of eugenol, thymol, and vanillin against HCMV in different cell lines.
  • Evaluated antiviral effects of eugenol, thymol, and vanillin in ARPE-19 and MRC-5 cell lines.
  • Measured dosages for efficacy and cytotoxicity to determine selectivity index.
  • Analyzed mechanisms of action including viral entry inhibition and gene expression suppression.
  • Vanillin showed the highest efficacy with low toxicity in both cell types.
  • Eugenol demonstrated virucidal activity and inhibited viral entry in ARPE-19 cells.
  • Thymol completely suppressed early gene expression (IE-1) in ARPE-19 cells and inhibited viral entry in MRC-5 cells.
  • Combining EOCs with ganciclovir resulted in synergistic antiviral effects.

Abstract

Human cytomegalovirus (HCMV) poses serious health risks, particularly for immunocompromised individuals. However, the current FDA-approved anti-HCMV drugs face challenges such as drug resistance and significant side effects, underscoring the need for alternative treatment options. Essential oil components (EOCs), including eugenol, thymol and vanillin, are recognized for their therapeutic potential. This study evaluates their antiviral effects against HCMV in epithelial (ARPE-19) and fibroblast (MRC-5) cell lines. Among the EOCs, vanillin demonstrated the highest efficacy, characterized by low toxicity and a high selectivity index in both cell types. Mechanistic differences were noted between the cell lines. In ARPE-19 cells, eugenol showed virucidal activity, inhibited viral entry and suppressed early gene expression (IE-1). Conversely, in MRC-5 cells, eugenol mainly blocked viral entry and exhibited virucidal effects. Thymol was most effective in ARPE-19 cells, where it completely suppressed IE-1 expression as a result of both inhibition of viral entry and a direct disruptive effect on IE-1 expression. In addition, thymol showed an effect on viral replication. In MRC-5 cells, thymol primarily inhibited viral entry and attachment. Vanillin exhibited dual inhibitory activity in both cell lines, blocking viral attachment and entry. In MRC-5, vanillin also appears to affect intermediate processes. Notably, combining EOCs with ganciclovir resulted in synergistic effects. The eugenol/ganciclovir combination was particularly effective in ARPE-19 cells, while thymol/ganciclovir showed enhanced efficacy in MRC-5 cells. These findings suggest that EOCs have significant potential as adjunct therapies to improve antiviral outcomes and address drug-resistant HCMV strains.

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Cite This Study

Martín-Martín et al. (2026) studied this question.

synapsesocial.com/papers/69be371c6e48c4981c67688dhttps://doi.org/10.1099/jgv.0.002248
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