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Antimicrobial and cytotoxic activity of Ferula gummosa plant essential oil compared to NaOCl and CHX: a preliminary in vitro study

  • Abbaszadegan, Abbas (Department of Endodontics, School of Dentistry, Shiraz University of Medical Sciences) ;
  • Gholami, Ahmad (Departments of Pharmaceutical Biotechnology and Pharmaceutical Sciences Research Center, Shiraz University of Medical Sciences) ;
  • Mirhadi, Hosein (Department of Endodontics, School of Dentistry, Shiraz University of Medical Sciences) ;
  • Saliminasab, Mina (Students' Research Committee, School of Dentistry, Shiraz University of Medical Sciences) ;
  • Kazemi, Aboozar (Pharmaceutical Sciences Research Center, Shiraz University of Medical Sciences) ;
  • Moein, Mahmood Reza (Departments of Pharmacognosy and Medicinal Plants Processing Research Center, Shiraz University of Medical Sciences)
  • 투고 : 2014.06.07
  • 심사 : 2014.09.11
  • 발행 : 2015.02.28

초록

Objectives: The usage of medicinal plants as natural antimicrobial agents has grown in many fields including dental medicine. The aim of this in vitro study was three-fold: (i) to determine the chemical compositions of the Ferula gummosa essential oil (FGEO), (ii) to compare the antimicrobial efficacy of the oil with sodium hypochlorite (NaOCl) and chlorhexidine (CHX), (iii) to assess the toxic behavior of FGEO in different concentrations compared to 5% NaOCl and 0.2% CHX. Materials and Methods: Gas chromatography/mass spectrometry (GC/MS) was used to determine the chemical compositions of the oil. The disk diffusion method and a broth micro-dilution susceptibility assay were exploited to assess the antimicrobial efficacy against Enterococcus faecalis, Staphylococcus aureus, Streptococcus mitis, and Candida albicans. The cytocompatibility of the FGEO was assessed on L929 fibroblasts, and compared to that of NaOCl and CHX. Results: Twenty-seven constituents were recognized in FGEO. The major component of the oil was ${\beta}$-pinene (51.83%). All three irrigants significantly inhibited the growth of all examined microorganisms compared to the negative control group. FGEO at $50{\mu}g/mL$ was effective in lower concentration against Enterococcus faecalis than 5% NaOCl and 0.2% CHX, and was also more potent than 0.2% CHX against Candida albicans and Staphylococcus aureus. FGEO was a cytocompatible solution, and had significantly lower toxicity compared to 5% NaOCl and 0.2% CHX. Conclusions: FGEO showed a promising biological potency as a root canal disinfectant. More investigations are required on the effectiveness of this oil on intracanal bacterial biofilms.

키워드

참고문헌

  1. Sundqvist G, Figdor D, Persson S, Sjogren U. Microbiologic analysis of teeth with failed endodontic treatment and the outcome of conservative retreatment. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 1998;85:86-93. https://doi.org/10.1016/S1079-2104(98)90404-8
  2. Pinheiro ET, Gomes BP, Ferraz CC, Sousa EL, Teixeira FB, Souza-Filho FJ. Microorganisms from canals of rootfilled teeth with periapical lesions. Int Endod J 2003;36:1-11. https://doi.org/10.1046/j.1365-2591.2003.00603.x
  3. Reader CM, Boniface M, Bujanda-Wagner S. Refractory endodontic lesion associated with Staphylococci aureus. J Endod 1994;20:607-609. https://doi.org/10.1016/S0099-2399(06)80087-7
  4. Peciuliene V, Reynaud AH, Balciuniene I, Haapasalo M. Isolation of yeasts and enteric bacteria in root-filled teeth with chronic apical periodontitis. Int Endod J 2001;34:429-434. https://doi.org/10.1046/j.1365-2591.2001.00411.x
  5. Gomes BP, Ferraz CC, Vianna ME, Berber VB, Teixeira FB, Souza-Filho FJ. In vitro antimicrobial activity of several concentrations of sodium hypochlorite and chlorhexidine gluconate in the elimination of Enterococcus faecalis. Int Endod J 2001;34:424-428. https://doi.org/10.1046/j.1365-2591.2001.00410.x
  6. Zehnder M. Root canal irrigants. J Endod 2006;32:389-398. https://doi.org/10.1016/j.joen.2005.09.014
  7. Hulsmann M, Hahn W. Complications during root canal irrigation-literature review and case reports. Int Endod J 2000;33:186-193. https://doi.org/10.1046/j.1365-2591.2000.00303.x
  8. Mohammadi Z, Abbott PV. Antimicrobial substantivity of root canal irrigants and medicaments: a review. Aust Endod J 2009;35:131-139. https://doi.org/10.1111/j.1747-4477.2009.00164.x
  9. Haapasalo M, Shen Y, Qian W, Gao Y. Irrigation in endodontics. Dent Clin North Am 2010;54:291-312. https://doi.org/10.1016/j.cden.2009.12.001
  10. Mozaffarian V. The family of Umbelliferae in Iran: keys and distribution. Tehran: Research Institute of Forest and Rangelands press; 1983. p.114-116.
  11. Evans WC. Trease and Evans' pharmacognosy. 16th ed. London: Elsevier Health Sciences UK; 2009. p.205-206.
  12. Sadraei H, Asghari GR, Hajhashemi V, Kolagar A, Ebrahimi M. Spasmolytic activity of essential oil and various extracts of Ferula gummosa Boiss. on ileum contractions. Phytomedicine 2001;8:370-376. https://doi.org/10.1078/0944-7113-00052
  13. Sayyah M, Mandgary A, Kamalinejad M. Evaluation of the anticonvulsant activity of the seed acetone extract of Ferula gummosa Boiss. against seizures induced by pentylenetetrazole and electroconvulsive shock in mice. J Ethnopharmacol 2002;82:105-109. https://doi.org/10.1016/S0378-8741(02)00166-6
  14. Eftekhar F, Yousefzadi M, Borhani K. Antibacterial activity of the essential oil from Ferula gummosa seed. Fitoterapia 2004;75:758-759. https://doi.org/10.1016/j.fitote.2004.09.004
  15. Mandegary A, Sayyah M, Heidari MR. Antinociceptive and anti-inflammatory activity of the seed and root extracts of Ferula gummosa Boiss in mice and rats. DARU 2004;12:58-62.
  16. Ghasemi Y, Faridi P, Mehregan I, Mohagheghzadeh A. Ferula gummosa fruits: an aromatic antimicrobial agent. Chem Nat Comp 2005;41:311-314. https://doi.org/10.1007/s10600-005-0138-3
  17. Nabavi SF, Ebrahimzadeh MA, Nabavi SM, Eslami B. Antioxidant activity of flower, stem and leaf extracts of Ferula gummosa Boiss. Grasas Y Aceites 2010;61:244-250. https://doi.org/10.3989/gya.110809
  18. Adam R. Identification of essential oil components by gas chromatography/mass Spectrometry. 4th ed. Carol Stream, USA: Allured publishing corporation; 2007.
  19. Clinical and Laboratory Standards Institute (CLSI). Performance standards for antimicrobial susceptibility testing; twenty-fourth informational supplement. CLSI document M100-S24. Wayne, PA: Clinical and Laboratory Standard Institute; 2014.
  20. Gentil M, Pereira JV, Sousa YT, Pietro R, Neto MD, Vansan LP, de Castro Franca S. In vitro evaluation of the antibacterial activity of Arctium lappa as a phytotherapeutic agent used in intracanal dressings. Phytother Res 2006;20:184-186. https://doi.org/10.1002/ptr.1829
  21. Murray PE, Farber RM, Namerow KN, Kuttler S, Garcia-Godoy F. Evaluation of Morinda citrifolia as an endodontic irrigant. J Endod 2008;34:66-70. https://doi.org/10.1016/j.joen.2007.09.016
  22. Prabhakar J, Senthilkumar M, Priya MS, Mahalakshmi K, Sehgal PK, Sukumaran VG. Evaluation of antimicrobial efficacy of herbal alternatives (Triphala and green tea polyphenols), MTAD, and 5% sodium hypochlorite against Enterococcus faecalis biofilm formed on tooth substrate: an in vitro study. J Endod 2010;36:83-86.
  23. Badr AE, Omar N, Badria FA. A laboratory evaluation of the antibacterial and cytotoxic effect of Liquorice when used as root canal medicament. Int Endod J 2011;44:51-58. https://doi.org/10.1111/j.1365-2591.2010.01794.x
  24. Gupta A, Duhan J, Tewari S, Sangwan P, Yadav A, Singh G, Juneja R, Saini H. Comparative evaluation of antimicrobial efficacy of Syzygium aromaticum, Ocimum sanctum and Cinnamomum zeylanicum plant extracts against Enterococcus faecalis: a preliminary study. Int Endod J 2013;46:775-783. https://doi.org/10.1111/iej.12058
  25. Abedi D, Jalali M, Asghari G, Sadeghi N. Composition and antimicrobial activity of oleogumresin of Ferula gumosa Bioss. essential oil using Alamar Blue$^{TM}$. Res Pharm Sci 2008;3:41-45.
  26. Ghannadi A, Amree S. Volatile oil constituents of Ferula gummosa Boiss. from Kashan, Iran. J Essent Oil Res 2002;14:420-421. https://doi.org/10.1080/10412905.2002.9699908
  27. Talebi Kouyakhi E, Naghavi MR, Alayhs M. Study of the essential oil variation of Ferula gummosa samples from Iran. Chem Nat Comp 2008;44:124-126. https://doi.org/10.1007/s10600-008-0038-4
  28. Leonardo MR, da Silva LA, Tanomaru Filho M, Bonifacio KC, Ito IY. In vitro evaluation of antimicrobial activity of sealers and pastes used in endodontics. J Endod 2000;26:391-394. https://doi.org/10.1097/00004770-200007000-00003
  29. Beckstrom-Sternberg SM, Duke JA. Handbook of medicinal mints (aromathematics). Boca Raton, FL: CRC press Inc.; 1996. p379-383.
  30. Silva RO, Salvadori MS, Sousa FBM, Santos MS, Carvalho NS, Sousa DP, Gomes BS, Oliveira FA, Barbosa AL, Freitas RM, de Almeida RN, Medeiros JR. Evaluation of the anti‐inflammatory and antinociceptive effects of myrtenol, a plant‐derived monoterpene alcohol, in mice. Flavour Fragr J 2014;29:184-192. https://doi.org/10.1002/ffj.3195
  31. Lorenzetti BB, Souza GE, Sarti SJ, Santos Filho D, Ferreira SH. Myrcene mimics the peripheral analgesic activity of lemongrass tea. J Ethnopharmacol 1991;34:43-48. https://doi.org/10.1016/0378-8741(91)90187-I
  32. Fayaz F, Roodsari SR, Gachkar L, Pourkaveh B, Safaei HG. The antimicrobial activity of Ferula gummosa on bacterial strains isolated from patients with gastroenteritis. Arch Clin Infect Dis 2011;6:21-24.
  33. Faria G, Celes MR, De Rossi A, Silva LA, Silva JS, Rossi MA. Evaluation of chlorhexidine toxicity injected in the paw of mice and added to cultured l929 fibroblasts. J Endod 2007;33:715-722. https://doi.org/10.1016/j.joen.2006.12.023
  34. Ashraf H, Moradimajd N, Mozayeni MA, Dianat O, Mahjour F, Yadegari Z. Cytotoxicity evaluation of three resin-based sealers on an L929 cell line. Dent Res J (Isfahan) 2012;9:549-553. https://doi.org/10.4103/1735-3327.104872
  35. Gharaei R, Akrami H, Heidari S, Asadi MH, Jalili A. The suppression effect of Ferula gummosa Boiss. extracts on cell proliferation through apoptosis induction in gastric cancer cell line. Eur J Integr Med 2013;5:241-247. https://doi.org/10.1016/j.eujim.2013.01.002

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  7. Natural Therapeutic Options in Endodontics - A Review vol.10, pp.None, 2015, https://doi.org/10.2174/1874210601610010214
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  9. Mining Ferula gummosa transcriptome to identify miRNAs involved in the regulation and biosynthesis of terpenes vol.645, pp.None, 2015, https://doi.org/10.1016/j.gene.2017.12.035
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