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In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus aureus and Listeria monocytogenes

Year 2024, Volume: 17 Issue: 2, 117 - 121
https://doi.org/10.30607/kvj.1443012

Abstract

Foodborne bacterial infections and intoxications constitute a large proportion of bacterial diseases worldwide. In recent years, there has been an increasing resistance to chemotherapeutics used in the treatment of these diseases. Studies have shown that some compounds extracted from natural products and plants have alternative potential to antibiotics. In this study, it was aimed to reveal the antimicrobial potential of hesperidin microemulsion on Listeria monocytogenes and Staphylococcus aureus. In the study, the broth microdilution method was used to demonstrate in vitro antimicrobial activity. In the microdilution test, the MIC values of hesperidin for S. aureus and L. monocytogenes were as 128 μg/mL. In comparison, the MIC values of ampicillin for S. aureus and L. monocytogenes were as 0.5 μg/mL. Hesperidin is a compound with biologically valuable properties. Its antimicrobial effect may open a promising field as an alternative to antibiotics. However, detailed studies on hesperidin and similar potential active substances are needed to fully understand its therapeutic potential and to define its mechanisms of action.

References

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  • Bailey, G. D., Vanselow, B. A., Hornitzky, M.A., Hum, S.I., Eamens, G.J., Gill, P. A., et al. (2003). A study of the foodborne pathogens: Campylobacter, Listeria and Yersinia, in faeces from slaughter-age cattle and sheep in Australia. Commun Dis Intell Q Rep, 27(2):249-57.
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  • Çetinkaya, E. A., Çiftçi, O., Alan, S., Öztanır, M. N., & Başak, N. (2019). The efficacy of hesperidin for treatment of acute otitis media. Auris Nasus Larynx, 46(2), 172-177.
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  • Duraipandiyan, V., Ayyanar, M., & Ignacimuthu, S. (2006). Antimicrobial activity of some ethnomedicinal plants used by Paliyar tribe from Tamil Nadu, India. BMC Comp Alter Med, 6(35):1-7
  • Garg, A., Garg, S., Zaneveld, L. J. D., & Singla, A. K. (2001). Chemistry and pharmacology of the citrus bioflavonoid hesperidin. Phytotherapy research, 15(8), 655-669.
  • Garg, A., Garg, S., Zaneveld, L. J. D., & Singla, A. K. (2001). Chemistry and pharmacology of the citrus bioflavonoid hesperidin. Phytotherapy research, 15(8), 655-669.
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Hesperidin Mikroemülsiyonunun Staphylococcus aureus ve Listeria monocytogenes'e Karşı In Vitro Antibakteriyel Etkisi

Year 2024, Volume: 17 Issue: 2, 117 - 121
https://doi.org/10.30607/kvj.1443012

Abstract

Gıda kaynaklı bakteriyel enfeksiyonlar ve zehirlenmeler dünya genelinde bakteriyel hastalıkların büyük bir bölümünü oluşturmaktadır. Son yıllarda bu hastalıkların tedavisinde kullanılan kemoterapötiklere karşı artan bir direnç söz konusudur. Yapılan çalışmalar, doğal ürünlerden ve bitkilerden elde edilen bazı bileşiklerin antibiyotiklere alternatif potansiyele sahip olduğunu göstermiştir. Bu çalışmada hesperidin mikroemülsiyonunun Listeria monocytogenes ve Staphylococcus aureus üzerindeki antimikrobiyal potansiyelinin ortaya konulması amaçlanmıştır. Çalışmada, in vitro antimikrobiyal aktiviteyi göstermek için broth mikrodilüsyon yöntemi kullanılmıştır. Mikrodilüsyon testinde hesperidinin S. aureus ve L. monocytogenes için MİK değerleri 128 μg/mL olarak bulunmuştur. Buna karşılık, ampisilinin S. aureus ve L. monocytogenes için MİK değerleri 0.5 μg/mL olarak bulunmuştur. Hesperidin biyolojik olarak değerli özelliklere sahip bir bileşiktir. Antimikrobiyal etkisi antibiyotiklere alternatif olarak umut verici bir alan açabilir. Bununla birlikte, terapötik potansiyelini tam olarak anlamak ve etki mekanizmalarını tanımlamak için hesperidin ve benzeri potansiyel aktif maddeler üzerinde ayrıntılı çalışmalara ihtiyaç vardır.

References

  • Abuelsaad, A. S., Mohamed, I., Allam, G., & Al-Solumani, A. A. (2013). Antimicrobial and immunomodulating activities of hesperidin and ellagic acid against diarrheic Aeromonas hydrophila in a murine model. Life sciences, 93(20), 714-722.
  • Abuelsaad, A. S., Mohamed, I., Allam, G., & Al-Solumani, A. A. (2013). Antimicrobial and immunomodulating activities of hesperidin and ellagic acid against diarrheic Aeromonas hydrophila in a murine model. Life sciences, 93(20), 714-722.
  • Altunayar-Unsalan, C., Unsalan, O., & Mavromoustakos, T. (2022). Molecular interactions of hesperidin with DMPC/cholesterol bilayers. Chemico-Biological Interactions, 366, 110131.
  • Altunayar-Unsalan, C., Unsalan, O., & Mavromoustakos, T. (2022). Molecular interactions of hesperidin with DMPC/cholesterol bilayers. Chemico-Biological Interactions, 366, 110131.
  • Atata, R. F., Sani, A., & Ajewole, S. M. (2003). Effect of Stem Bark Extracts of Enantia chloranta on Some Clinical isolates. Biochemistri, 15(2): 84-92
  • Atata, R. F., Sani, A., & Ajewole, S. M. (2003). Effect of Stem Bark Extracts of Enantia chloranta on Some Clinical isolates. Biochemistri, 15(2): 84-92
  • Bailey, G. D., Vanselow, B. A., Hornitzky, M.A., Hum, S.I., Eamens, G.J., Gill, P. A., et al. (2003). A study of the foodborne pathogens: Campylobacter, Listeria and Yersinia, in faeces from slaughter-age cattle and sheep in Australia. Commun Dis Intell Q Rep, 27(2):249-57.
  • Bailey, G. D., Vanselow, B. A., Hornitzky, M.A., Hum, S.I., Eamens, G.J., Gill, P. A., et al. (2003). A study of the foodborne pathogens: Campylobacter, Listeria and Yersinia, in faeces from slaughter-age cattle and sheep in Australia. Commun Dis Intell Q Rep, 27(2):249-57.
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  • Chassagne, F., Samarakoon, T., Porras, G., Lyles, J. T., Dettweiler, M., Marquez, L., Salam, A. M., Shabih S., Farrokhi, D. R., & Quave, C. L. (2021). A systematic review of plants with antibacterial activities: A taxonomic and phylogenetic perspective. Frontiers in pharmacology, 11, 2069.
  • Chassagne, F., Samarakoon, T., Porras, G., Lyles, J. T., Dettweiler, M., Marquez, L., Salam, A. M., Shabih S., Farrokhi, D. R., & Quave, C. L. (2021). A systematic review of plants with antibacterial activities: A taxonomic and phylogenetic perspective. Frontiers in pharmacology, 11, 2069.
  • Çetinkaya, E. A., Çiftçi, O., Alan, S., Öztanır, M. N., & Başak, N. (2019). The efficacy of hesperidin for treatment of acute otitis media. Auris Nasus Larynx, 46(2), 172-177.
  • Çetinkaya, E. A., Çiftçi, O., Alan, S., Öztanır, M. N., & Başak, N. (2019). The efficacy of hesperidin for treatment of acute otitis media. Auris Nasus Larynx, 46(2), 172-177.
  • de Souza, A. B. F., de Matos, N. A., de Freitas Castro, T., de Paula Costa, G., Oliveira, L. A. M., Nogueira, K. D. O. P. C., Ribeiro, I. M. L., Talvani, A., Cangussú, S. D., de Menezes, R. C. A., & Bezerra, F. S. (2022). Effects in vitro and in vivo of hesperidin administration in an experimental model of acute lung inflammation. Free Radical Biology and Medicine, 180, 253-262.
  • de Souza, A. B. F., de Matos, N. A., de Freitas Castro, T., de Paula Costa, G., Oliveira, L. A. M., Nogueira, K. D. O. P. C., Ribeiro, I. M. L., Talvani, A., Cangussú, S. D., de Menezes, R. C. A., & Bezerra, F. S. (2022). Effects in vitro and in vivo of hesperidin administration in an experimental model of acute lung inflammation. Free Radical Biology and Medicine, 180, 253-262.
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  • Duraipandiyan, V., Ayyanar, M., & Ignacimuthu, S. (2006). Antimicrobial activity of some ethnomedicinal plants used by Paliyar tribe from Tamil Nadu, India. BMC Comp Alter Med, 6(35):1-7
  • Duraipandiyan, V., Ayyanar, M., & Ignacimuthu, S. (2006). Antimicrobial activity of some ethnomedicinal plants used by Paliyar tribe from Tamil Nadu, India. BMC Comp Alter Med, 6(35):1-7
  • Garg, A., Garg, S., Zaneveld, L. J. D., & Singla, A. K. (2001). Chemistry and pharmacology of the citrus bioflavonoid hesperidin. Phytotherapy research, 15(8), 655-669.
  • Garg, A., Garg, S., Zaneveld, L. J. D., & Singla, A. K. (2001). Chemistry and pharmacology of the citrus bioflavonoid hesperidin. Phytotherapy research, 15(8), 655-669.
  • Ge, H., Wang, Y., & Zhao, X. (2022). Research on the drug resistance mechanism of foodborne pathogens. Microbial Pathogenesis, 162, 105306.
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There are 72 citations in total.

Details

Primary Language English
Subjects Veterinary Food Hygiene and Technology
Journal Section RESEARCH ARTICLE
Authors

Harun Hızlısoy 0000-0003-3391-0185

Early Pub Date June 12, 2024
Publication Date
Submission Date February 26, 2024
Acceptance Date April 25, 2024
Published in Issue Year 2024 Volume: 17 Issue: 2

Cite

APA Hızlısoy, H. (2024). In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus aureus and Listeria monocytogenes. Kocatepe Veterinary Journal, 17(2), 117-121. https://doi.org/10.30607/kvj.1443012
AMA Hızlısoy H. In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus aureus and Listeria monocytogenes. kvj. June 2024;17(2):117-121. doi:10.30607/kvj.1443012
Chicago Hızlısoy, Harun. “In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus Aureus and Listeria Monocytogenes”. Kocatepe Veterinary Journal 17, no. 2 (June 2024): 117-21. https://doi.org/10.30607/kvj.1443012.
EndNote Hızlısoy H (June 1, 2024) In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus aureus and Listeria monocytogenes. Kocatepe Veterinary Journal 17 2 117–121.
IEEE H. Hızlısoy, “In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus aureus and Listeria monocytogenes”, kvj, vol. 17, no. 2, pp. 117–121, 2024, doi: 10.30607/kvj.1443012.
ISNAD Hızlısoy, Harun. “In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus Aureus and Listeria Monocytogenes”. Kocatepe Veterinary Journal 17/2 (June 2024), 117-121. https://doi.org/10.30607/kvj.1443012.
JAMA Hızlısoy H. In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus aureus and Listeria monocytogenes. kvj. 2024;17:117–121.
MLA Hızlısoy, Harun. “In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus Aureus and Listeria Monocytogenes”. Kocatepe Veterinary Journal, vol. 17, no. 2, 2024, pp. 117-21, doi:10.30607/kvj.1443012.
Vancouver Hızlısoy H. In Vitro Antibacterial Effect of Hesperidin Microemulsion to Staphylococcus aureus and Listeria monocytogenes. kvj. 2024;17(2):117-21.

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