Effect of essential oil of Thymus vulgaris on bacterial pathogens responsible for gastroenteritis

M. Cheurfa1, Rachida Allem1, Mohammed Sebaihia1, S. Belhireche1
1Laboratoire de bioressources naturelles, faculté des sciences, université H.-B.-Chlef, BP 151, Chlef, 02000, Algérie

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Amarti F, Satrani B, Aafi A (2008) Composition chimique et activité antimicrobienne des huiles essentielles de Thymus capitatus et de Thymus bleicherianus du Maroc. Phytothérapie 6: 342–347

Amarti F, Satrani B, Ghanmi M, et al. (2010) Composition chimique et activité antimicrobienne des huiles essentielles de Thymus algeriensis Boiss et Thymus ciliatus du Maroc. Biotechnol Agron Soc Environ 14(1): 141–144

Amarti F, El Ajjouri M, Ghanmi M, et al. (2011) Composition chimique, activité antimicrobienne et antioxydante de l’huile essentielle de Thymus zygis du Maroc. Phytothérapie 9: 149–157

Bakkali F, Averbeck S, Averbeck D, Idaomar M (2007) Biological effects of essential oils. A review. Food Chem Toxicol 46(2): 446–475

Bouhdid S, Idaomar M, Zihi A, et al. (2006) Thymus essential oils: chemical composition and in vitro antioxidant and antibacterial activities. Congrès international de biochimie 9–12 mai 2006, Agadir, Maroc

Bouzouita N, Kachouri M, Ben Halima F, Chaabouni MM (2008) Composition chimique et activités antioxydante, antimicrobienne et insecticide de l’huile essentielle de Juniperus phoenicea. J Soc Chim Tunisie 10: 119–125

Carson CF, Hammer KA, Riley TV (2006) Melaleuca alternifolia (tea tree) oil: a review of antimicrobial and other medicinal properties. Clin Microbiol Rev 19(1): 50–62

Chebaibi A, Rhazi Filali F, Amine A, Zerhouni M (2011) Effet bactéricide (in vitro) des extraits aqueux des feuilles du grenadier marocain (Punica granatum L.) sur des bactéries multirésistantes aux antibiotiques. Phytothérapie 9(3): 158–164

Cimanga K, Kambu K, Tona L, et al. (2002) Correlation between chemical composition and antibacterial activity of essential oils of some aromatic medicinal plants growing in the Democratic Republic of Congo. J Ethnopharmacol 79: 213–220

Degryse AC, Delepla I, Voinier MA (2008) Risques et bénéfices possibles des huiles essentielles. Atelier santé et environnement, EHESP, pp. 1–94

Dob T, Dahmane D, Benabdelkader T, Chelghoum C (2006) Composition and antimicrobial activity of the essential oil of Thymus fontanesii. Pharm Biol 44: 607–612

Dorman HJD, Deans SG (2000) Antimicrobial agents from plants: antibacterial activity of plant volatile oils. J Appl Microbiol 88: 308–316

Echeverrigaray S, Agostini G, Atti-Serfini L (2001) Correlation between the chemical and genetic relationships among commercial Thyme cultivars. J Agric Food Chem 49: 4220–4223

El Ajjouri M, Ghanmi M, Satrani B (2010) Composition chimique et activité antifongique des huiles essentielles de Thymus algeriensis et Thymus ciliatus contre les champignons de pourriture du bois. Acta Botanica 2: 285–294

Haddouchi F, Lazouni HA, Meziane A, et al. (2009) Étude physicochimique et microbiologique de l’huile essentielle de Thymus fontanesii. Afr Sci 5(2): 246–259

Jordan MJ, Martinez RM, Martinez C (2009) Polyphenolic extract and essential oil quality of Thymus zygis ssp. Gracilis Shrubs cultivated under different watering levels. Ind Crops Prod 29: 145–153

Kaloustian J, Chevalier J, Mikail C (2008) Étude de six huiles essentielles: composition chimique et activité antibactérienne. Phytothérapie 6(3): 160–164

Kulkarni RN, Baskaran K, Ramesh S, Kumar S (1996) Intra-clonal variation for essential oil content and composition in plants derived from leaf cuttings of roses cented geranium (Pelargonium sp). Ind Crops Prod 6: 107–112

Moldão-Martins M, Gabriela Bernardo-Gil M, Luisa Beirão da Costa M (2002) Sensory and chemical evaluation of Thymus zygis L. essential oil and compressed CO2 extracts. Eur Food Res Technol 214: 207–211

Nielsen PV, Rios R (2000) Inhibition of fungal growth on bread by volatile components from spices and herbs, and the possible application in active packaging, with special emphasis on mustard essential oil. Int J Food Microbiol 60: 219–229

OMS (2005) La résistance aux antimicrobiens: une menace pour la sécurité sanitaire mondiale. A58/14: pp. 1–6

Oussalah M, Caillet S, Salmiéri S, et al. (2006) Antimicrobial effects of alginate based film containing essential oils for preservation of whole beef muscle. J Food Protection 69(10): 2364–2369

Pinto E, Pina-Vaz C, Salgueiro L (2006) Antifungal activity of the essential oil of Thymus pulegioides on Candida, Aspergillus and dermatophyte spices. J Med Microbiol 55: 1367–1373

Satrani B, Farah A, Fechtal M, et al. (2001) Composition chimique et activité antimicrobienne des huiles essentielles de Satureja calamintha et Satureja alpina du Maroc. Ann Fals Exp Chim 94(956): 241–250

Satrani B, Ghanmi M, Farah A (2010) Composition chimique et activité antimicrobienne de l’huile essentielle de Cladanthus mixtus. Bull Soc Pharm 146: 85–96

Skandamis P, Koutsoumanis K, Fasseas K, Nychas GJE (2001) Inhibition of oregano essential oil and EDTA on Escherichia coli O157: H7. Ital J Food Sci 13: 65–75

Trombetta D, Saija A, Bisignano G (2002) Study on the mechanisms of the antibacterial action of some α, β-unsaturated aldehydes. Lett Appl Microbiol 35: 285–290

Ultée A, Kets EPW, Smid EJ (1999) Mechanisms of action of carvacrol on the food-borne pathogen Bacillus cereus. J Appl Microbiol 65(10): 4606–4610

Wright GD, Sutherland AD (2007) New strategies for combating multidrug-resistant bacteria. Trends Mol Med 13(6): 260–267