[1. Meng XJ, Lindsay DS, Sriranganathan N. Wild boars as sources for infectious diseases in livestock and humans. Philos Trans R Soc Lond B Biol Sci 2009; 27:2697-707.10.1098/rstb.2009.0086286509419687039]Search in Google Scholar
[2. Whatmore AM. Current understanding of the genetic diversity of Brucella, an expanding genus of zoonotic pathogens. Infect Genet Evol 2009; 9(6):1168-84.10.1016/j.meegid.2009.07.00119628055]Search in Google Scholar
[3. Valenza G, Kallmann B, Berend A, Mlynski R, Nöckler K, Kurzai O, et al. Isolation of Brucella melitensis from a patient with hearing loss. Euro J Clin Microbiol & Infect Dis 2006 ; 25: 67-68.10.1007/s10096-006-0084-416418830]Search in Google Scholar
[4. Glynn MK, Lynn TV. Brucellosis. J Am Vet Med Assoc 2008 ;15 (6):900-8.]Search in Google Scholar
[5. Ariza J, Bosilkovski M, Cascio A, Colmenero JD, Corbel MJ, Falagas ME, et al. Perspectives for the Treatment of Brucellosis in the 21st Century: The Ioannina Recommendations. PLoS Med 2007; 4:1872-188.10.1371/journal.pmed.0040317222292718162038]Search in Google Scholar
[6. Magofin RL, Spink WW. The protection of intracellular brucella against streptomycin alone and in combination with other antibiotics. J Lab Clin Med 1951; 37:924-930.]Search in Google Scholar
[7. Solera J, Martinez-Alfaro E, Espinosa A. Recognition and optimum treatment of brucellosis. Drugs 1997; 53:245-256.10.2165/00003495-199753020-000059028744]Search in Google Scholar
[8. Pappas G, Christou L, Akritidis N, Tsianos EV. Quinolones for brucellosis: treating old diseases with new drugs. Clin Microbiol Infect 2006; 12:823-5.10.1111/j.1469-0691.2006.01442.x16882286]Search in Google Scholar
[9. Gogia A, Dugga L, and Dutta S. An unusual etiology of PUO. J A P I 2011; 59:47-49.]Search in Google Scholar
[10. Valdezate S, Navarro A, Medina-Pascual MJ, Carrasco G, Saéz-Nieto JA. Molecular screening for rifampicin and fluoroquinolone resistance in a clinical population of Brucella melitensis. J Antimicrob Chemother 2010; 65:51-3.10.1093/jac/dkp38919861338]Search in Google Scholar
[11. Mitscher LA, Drake S, Gollapudi SR, Okwute SK. A modern look at folkloric use of anti-infective agents. J Nat Prod 1987; 50:1025-1040. doi:10.1021/np50054a003.10.1021/np50054a0033443855]Search in Google Scholar
[12. Faid M, Bakhy K, Anchad M, Tantaoui-Elaraki A and Alomondpaste J. Physicochemical and microbiological characterizations and preservation with sorbic acid and cinnamon. J Food Prod 1995; 58:547-550.10.4315/0362-028X-58.5.54731137260]Search in Google Scholar
[13. Milhau G, Valentin A, Benoit F, Mallie M, Bastide J, Pelissier Y, et al. In vitro antimicrobial activity of eight essential oils. J Essent Oil Res 1997; 9:329-333.10.1080/10412905.1997.10554252]Search in Google Scholar
[14. Lis-Balchin M, Deans SG. Bioactivity of selected plant essential oils against Listeria monocytogenes. J Appl Bacteriol 1997; 82:759-762. doi:10.1046/j.1365-2672.1997.00153.x.10.1046/j.1365-2672.1997.00153.x]Search in Google Scholar
[15. Adiguzel A, Ozer H, Kilic H, Cetin B. Screening of antimicrobial activity of essential oil and methanol extract of Satureja hortensis on Foodborne bacteria and fungi. Czech J. Food Sci 2006; 25:81-89.]Search in Google Scholar
[16. Marino M, Bersani C, Comi G. Impedance measurements to study the antimicrobial activity of essential oils from Lamiaceae and Compositae. Int J Food Microbiol 2001; 67:187.10.1016/S0168-1605(01)00447-0]Search in Google Scholar
[17. Seyyednejad SM, Maleki S, Mirzaei Damabi N, Motamedi H. Antibacterial activity of Prunus mahaleb and Parsley (Petroselinum crispum) against some pathogen. Asian J Biol Sci 2008; 1:51-55.10.3923/ajbs.2008.51.55]Search in Google Scholar
[18. Seyyednejad SM, Motamedi H. A Review on native medicinal plants in Khuzestan, Iran with antibacterial properties. Int J Pharmacol 2010; 6:551-560.10.3923/ijp.2010.551.560]Search in Google Scholar
[19. Motamedi H, Darabpour E, Gholipour M, Seyyed Nejad SM. In vitro assay for the anti-brucella activity of medicinal plants against tetracycline-resistant Brucella melitensis. J Zhejiang Univ-Sci B (Biomed & Biotechnol) 2010; 11:506-511.10.1631/jzus.B0900365]Search in Google Scholar
[20. Almariri A. Ultraviolet C lethal effect on Brucella melitensis. New Microbiologica 2008; 31:47-55.]Search in Google Scholar
[21. Bicker BJ. Diagnostic strategies used for the identification of Brucella. Vet Microbiol 2002; 90:433-434.10.1016/S0378-1135(02)00227-4]Search in Google Scholar
[22. European Pharmacopoeia. 7thEd. Council of Europe: Strasbourg, France. 2011: 99.]Search in Google Scholar
[23. Koneman EW, Allen SD, Janda WM, Schreckenberger P C, Winn WC, editors. Antimicrobial susceptibility testing. In: Color Atlas and Textbook of Diagnostic Microbiology. 5th ed. Lippincott-Raven Publ, Philadelphia, 1997; p. 785-856.]Search in Google Scholar
[24. Marianelli C, Ciuchini F, Tarantino M, Pasquali P, Adone R. Genetic bases of the rifampin resistance phenotype in Brucella spp. J Clin Microbiol 2004; 42: 5439-5443.10.1128/JCM.42.12.5439-5443.200453523515583262]Search in Google Scholar
[25. Shelef LA. Antimicrobial effects of spices. J Food Saf 1983; 6:29-44.10.1111/j.1745-4565.1984.tb00477.x]Search in Google Scholar
[26. Zaika LL. Spices and herbs: their antimicrobial activity and its determination. J Food Saf 1988; 9:97-118.10.1111/j.1745-4565.1988.tb00511.x]Search in Google Scholar
[27. Beuchat LR, Glden DA. Antimicrobials occurring naturally in foods. Food Technolol 1989; 43:134-42.]Search in Google Scholar
[28. Ting EWT, Deibel KE. Sensitivity of Listeria monocytogenes to spices at low temperatures. J Food Saf 1992; 12:129-37.]Search in Google Scholar
[29. Juven BJ, Kanner J, Schved F, Weisslowicz H.. Factors that interact with the antibacterial action of thyme essential oil and its active constituents. J Appl Bacteriol 1994; 76:626-31.10.1111/j.1365-2672.1994.tb01661.x8027009]Search in Google Scholar
[30. Basaga H, Tekkaya C, Acikel F. Antioxidative and free radical scavenging properties of rosemary extract. Lebensm Wisst Technol 1997; 30:34-142.10.1006/fstl.1996.0127]Search in Google Scholar
[31. Hsieh PC, Mau JL, Huang SH. Antimicrobial effect of various combinations of plant extracts. Food Microbiol 2001; 18:35-43.10.1006/fmic.2000.0376]Search in Google Scholar
[32. Brul B, Coote P. Preservative agents in foods mode of action and microbial resistance mechanisms. Int J Food Microbiol 1999; 50:1-17.10.1016/S0168-1605(99)00072-0]Search in Google Scholar
[33. Darabpour E, Poshtkouhian B, Motamedi H, Seyyed Nejad SM. Antibacterial activity of different parts of Peganum harmala L. growing in Iran against multi-drug resistant bacteria. EXCLI J 2011; 10:252-263.]Search in Google Scholar
[34. Shapouri R, Rahnema M. Evaluation of antimicrobial effect of hops extracts on intramacrophages Brucella abortus and B. melitensis. Jundishapur J Microbiol 2011; 4(Suppl. 1): S51-S58.]Search in Google Scholar
[35. Ooi LS, Li Y, Kam SL, Wang H, Wong EY, Ooi VE. Antimicrobial activities of Cinnamon oil and cinnamaldehyde from the Chinese medicinal herb Cinnamomum cassia Blume. Am J Chin Med 2006; 34:511-522.10.1142/S0192415X0600404116710900]Search in Google Scholar
[36. Figueiredo AC, Barroso JG, Pedro LG. Volatiles from Thymbra and Thymus species of the western Mediterranean basin, Portugal and Macaronesia. Nat Prod Commun 2010; 5:1465-1476.10.1177/1934578X1000500924]Search in Google Scholar
[37. Almariri A, Swied G, Oda A, Al Hallab L. Antibacterial Activity of Thymus Syriacus Boiss Essential Oil and Its Components against Some Syrian Gram-Negative Bacteria Isolates. Iran J Med Sci 2013; 38. In press.]Search in Google Scholar
[38. Tayoub G, Odeh A, Ghanem I. Chemical composition and fumigation toxicity of Laurus nobilis L. and Salvia officinalis L. essential oils on larvae of khapra beetle (Trogoderma granarium Everts). Herba Pol 2012; 58(2):26-37. ]Search in Google Scholar