Isfahan University of Medical Sciences

Science Communicator Platform

Stay connected! Follow us on X network (Twitter):
Share this content! By
The Inhibitory Effect of the Methanolic Extract and the Essence of Anvillea Garcinii on Expression of the Genes Related to Staphylococcus Aureus Biofilm Formation Publisher



M Ansari MARYAM ; M Kazemi MOHAMMAD ; Mm Sichani Maryam MOHAMMADI ; V Karbasizadeh VAJIHE
Authors

Source: Iranian Journal of Microbiology Published:2025


Abstract

Background and Objectives: Staphylococcus aureus (S. aureus) is a pathogenic bacterium whose virulence is attributed to its extracellular compounds and biofilm-forming ability. This study aimed to evaluate the inhibitory effects of the methanolic extract (AGME) and the essential oil (AGEO) of Anvillea garcinii on the growth and the biofilm formation of S. aureus. Materials and Methods: The antibacterial and antibiofilm activities of AGME and AGEO against S. aureus ATCC 6538 were assessed using the microbroth dilution method and the Crystal Violet Staining Assay, respectively. The expression levels of sarA, spa, and icaA, genes involved in biofilm formation, were analyzed using real-time PCR. Results: AGME and AGEO inhibited S. aureus growth at minimum inhibitory concentrations (MIC) of 1 mg/ml and 0.6 mg/ ml, respectively. AGME exhibited a 72% inhibition of biofilm formation at ¼ MIC, whereas AGEO showed no significant antibiofilm activity. AGME downregulated the expression of sarA, a key regulator of biofilm formation, as well as spa, and icaA genes. Conclusion: This study demonstrated that A. garcinii essential oil (AGEO) exhibits significant antimicrobial activity, while its methanolic extract (AGME) effectively inhibits biofilm formation in S. aureus. These findings suggest the potential application of AGEO and AGME as antimicrobial and antibiofilm agents. Further investigations on their efficacy against other bacterial pathogens are recommended. © 2025 Elsevier B.V., All rights reserved.
Other Related Docs
17. Staphylococcus Aureus in Acne Pathogenesis: A Case-Control Study, North American Journal of Medical Sciences (2012)
19. Antimicrobial Activities of Phenolic and Non-Phenolic Fractions of Inula Viscosa (L) Extract, Journal of Biologically Active Products from Nature (2011)