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Investigating the Antibacterial Effects of Zataria multiflora Methanolic Extract on Standard Pathogenic Bacteria in Laboratory Conditions

Year 2024, Volume: 8 Issue: 2, 102 - 110

Abstract

Alternative treatments are becoming more and more necessary due to the increasing growth in medication resistance to synthetic antibiotics. The purpose of this study was to examine the antibacterial capabilities of an extract from Zataria multiflora (Z. multiflora) against a variety of pathogenic bacteria. Z. multiflora plants were collected from the natural resources of Isfahan province and verified as Z. multiflora by botanists from the Agricultural Jihad Organization. Methanolic extract of Z. multiflora was prepared, and its effects were tested at concentrations of 50 mg/ml, 100 mg/ml, 200 mg/ml, and 400 mg/ml using the well diffusion and disk diffusion methods on Staphylococcus aureus (S. aureus), Bacillus cereus (B. cereus), Escherichia coli (E. coli) and Pseudomonas aeruginosa (P. aeruginosa). Minimum inhibitory concentration of bacterial growth and minimum bacterial pathogen concentration (MIC/MBC) were determined through dilution in tubes. The outcomes showed that both gram-positive and gram-negative bacteria were significantly inhibited by the methanolic extract of Z. multiflora. The MBC/MIC analysis revealed that S. aureus was the most sensitive, while E. coli was the least sensitive to the Z. multiflora extract. The study shows the potential of the methanolic extract from Z. multiflora against various pathogenic bacteria, including Gram-positive and Gram-negative ones. It suggests it could be a viable alternative to synthetic antibiotics, especially in the face of antibiotic resistance. Further research is needed to understand its mechanisms, optimize extract preparation, and explore its clinical applications..

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Year 2024, Volume: 8 Issue: 2, 102 - 110

Abstract

References

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  • Goudarzi, M., Sattari, M., Najar Piraieh, S., Goudarzi, G., & Bigdeli, M. (2006). Antibacterial effects of aqueous and alcoholic extracts of Thyme on enterohemorrhagic Escherichia coli. Yafteh, 8 (3), 63-69.
  • Hatami Pirghibi, T., Chehri, K., Abiri, R., & Karimi, I. (2021). Effect of hydro-alcoholic extracts of Rosmarinus officinalis L., Mentha piperita L., and Zataria multiflora Boiss. on biofilm formation of Pseudomonas. Research in Medicine, 45 (3), 11-17.
  • Hornok, L. (1988). Effect of environmental factors on the production of some essential oil plants. Developments in Food Science, 18, 129-140.
  • Izadiyan, P., Salehi, A., Moaddeli, A., Zarenezhad, M., & Izadiyan, M. (2022). How quantity of bioactive compounds of Zataria multiflora differ using traditional or modern extraction methods. Journal of Medicinal plants and By-Products, 11 (Special), 107-115. https://doi.org/10.22092/jmpb.2021.353668.1339
  • Jafari-Sales, A., & Hossein-Nezhad, P. (2020). Antimicrobial effects of Rosmarinus officinalis methanolic extract on Staphylococcus aureus, Bacillus cereus, Escherichia coli and Pseudomonas aeruginosa in laboratory conditions. Journal of Medicinal and Chemical Sciences, 3 (2), 103-108. https://doi.org/10.26655/jmchemsci.2020.2.2
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  • Jafari-Sales, A., Jafari, B., Sayyahi, J., & Zohoori-Bonab, T. (2015). Evaluation of antibacterial activity of ethanolic extract of Malva neglecta and Althaea officinalis L. on antibiotic-resistant strains of Staphylococcus aureus. Journal of Biology and Today's World, 4 (2), 58-62. https://doi.org/10.15412/J.JBTW. 01040205
  • Jafari-Sales, A., Meshinchi, P., & Shabkhosh, A. (2021). In vitro antibacterial activity of ethanolic extract of Aloe vera and silver nanoparticles on standard strains of some pathogenic bacteria. Journal of Clinical and Basic Research, 5 (4), 22-30. https://doi.org/10.29252/Jcbr.5.4.22
  • Jafarı-Sales, A., & Pashazadeh, M. (2020). Antibacterial effect of methanolic extract of saffron petal (Crocus sativus L.) on some standard gram positive and gram negative pathogenic bacteria In vitro. Current Perspectives on Medicinal and Aromatic Plants, 3 (1), 1-7. https://doi.org/10.38093/cupmap.692879
  • Jafari, B., Jafari-Sales, A., Khaneshpour‬‏, H., Fatemi, S., Pashazadeh, M., Al-Snafi, A. E., & Shariat, A. (2020). Antibacterial effects of Thymus vulgaris, Mentha pulegium, Crocus sativus and Salvia officinalis on pathogenic bacteria: A brief review study based on gram-positive and gram-negative bacteria. Jorjani Biomedicine Journal, 8 (3), 58-74. https://doi.org/10.29252/jorjanibiomedj.8.3.58
  • Jafari Sales, A., & Shariat, A. (2020). Synergistic Effects of silver nanoparticles with ethanolic extract of Eucalyptus globules on standard pathogenic bacteria in vitro. Tabari Biomedical Student Research Journal, 2 (3), 13-21. https://doi.org/10.18502/tbsrj.v2i3.4528
  • Jebelli Javan, A. (2016). Combinational effects of Trachyspermum ammi and Zataria multiflora Boiss. essential oils on some pathogenic food-borne bacteria. Koomesh, 17 (2), 374-383.
  • Karbasizade, V., Dehghan, P., Sichani, M. M., Shahanipoor, K., Jafari, R., & Yousefian, R. (2017). Evaluation of three plant extracts against biofilm formation and expression of quorum sensing regulated virulence factors in Pseudomonas aeruginosa. Pakistan Journal of Pharmaceutical Sciences, 30, 2 (Suppl.), 585-589.
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There are 59 citations in total.

Details

Primary Language English
Subjects Medical Bacteriology
Journal Section Research articles
Authors

Niloufar Yamchlou 0009-0000-5921-1046

Kağan Tolga Cinisli 0000-0003-3909-9637

Azizeh Shadi-dizaji 0000-0002-1996-7823

Zahra Ghahremani 0009-0002-9744-3707

Aylin Golestani 0009-0008-0886-9874

Kosar Soleymanpour 0009-0002-2559-4645

Kosar Hosseini-karkaj 0009-0001-1120-9665

Abolfazl Jafarı-sales 0000-0002-5710-4076

Mehrdad Pashazadeh 0000-0001-9103-6276

Early Pub Date August 18, 2024
Publication Date
Submission Date May 30, 2024
Acceptance Date July 23, 2024
Published in Issue Year 2024 Volume: 8 Issue: 2

Cite

APA Yamchlou, N., Cinisli, K. T., Shadi-dizaji, A., Ghahremani, Z., et al. (2024). Investigating the Antibacterial Effects of Zataria multiflora Methanolic Extract on Standard Pathogenic Bacteria in Laboratory Conditions. International Journal of Nature and Life Sciences, 8(2), 102-110.