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Biofouling
The Journal of Bioadhesion and Biofilm Research
Volume 38, 2022 - Issue 10
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Research Articles

Anti-adhesion and antibiofilm activities of Lavandula mairei humbert essential oil against Acinetobacter baumannii isolated from hospital intensive care units

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Pages 953-964 | Received 06 Jun 2022, Accepted 12 Nov 2022, Published online: 20 Dec 2022

References

  • Abouri M, Mousadik A, El Msanda F, Boubaker H, Saadi B, Cherifi K. 2012. An ethnobotanical survey of medicinal plants used in the Tata Province, Morocco. Int J Med Plant Res [Internet]. 1:99–123. www.internationalscholarsjournals.org.
  • Babiker A, Clarke LG, Saul M, Gealey JA, Clancy CJ, Nguyen MH, Shields RK. 2021. Changing epidemiology and decreased mortality associated with carbapenem-resistant gram-negative bacteria, 2000–2017. Clin Infect Dis. 73:4521–4530. doi:10.1093/cid/ciaa1464
  • Barkai H, Sadiki M, El abed S, EL harchli EH, Boutahari S, Ibnsouda Koraichi S. 2015. The effect of carvacrol and carvone treatments on the cedar wood surface physico-chemical properties. Int J Sci Eng Res. 6(6).
  • Bazargani MM, Rohloff J. 2016. Antibiofilm activity of essential oils and plant extracts against Staphylococcus aureus and Escherichia coli biofilms. Food Control [Internet]. 61:156–164. doi:10.1016/j.foodcont.2015.09.036
  • Bennouna F, Ibnsouda K S, Barkai H, Lekbach Y, El Abed S, Lachkar M. 2018. Essential oil effect on the physicochemical characteristics of different wood species. Asian J Sci Res. 11:568–573. doi:10.3923/ajsr.2018.568.573
  • Bennouna F, Lachkar M, El Abed S, Saad I. 2020. Cedrus atlantica essential oil: antimicrobial activity and effect on the physicochemical properties of cedar wood surface. Moroccan J Biol [Internet]. 16:35–45. https://www.researchgate.net/publication/342643382.
  • Boubaker H, Karim H, Msanda F, Boudyach EH, Ait Ben Ao A. 2019. Evaluation of the antibiofilm and antimicrobial properties of Ziziphora tenuior L. essential oil against multidrug-resistant. J Appl Sci. 19:544–550. doi:10.3923/jas.2019.544.550
  • Celep E, Akyüz S, İnan Y, Yesilada E. 2018. Assessment of potential bioavailability of major phenolic compounds in Lavandula stoechas L. ssp. stoechas. Ind Crops Prod. 118:111–117. doi:10.1016/j.indcrop.2018.03.041
  • Celik C, Tutar U, Karaman I, Hepokur C, Atas M. 2015. Evaluation of the antibiofilm and antimicrobial properties of Ziziphora tenuior L. essential oil against multidrug-resistant Acinetobacter baumannii. Int J Pharmacol. 12:28–35. doi:10.3923/ijp.2016.28.35
  • Codjoe F, Donkor E. 2017. Carbapenem resistance: a review. Med Sci. 6:1. doi:10.3390/medsci6010001
  • El Hamdaoui A, Msanda F, Boubaker H, Leach D, Bombarda I, Vanloot P, El Aouad N, Abbad A, Boudyach EH, Achemchem F, et al. 2018. Essential oil composition, antioxidant and antibacterial activities of wild and cultivated Lavandula mairei Humbert. Biochem Syst Ecol [Internet]. 76:1–7. doi:10.1016/j.bse.2017.11.004
  • Elkheloui R, Laktib A, Zanzan M, Mimouni R, Achemchem F, Aitalla A, Fatima H. 2022. Effects of glucose and temperature on exopolysaccharides, extracellular matrix proteins production and biofilm formation of carbapenem resistant Acinetobacter baumannii. Iran J Med Microbiol. 16:155–164. doi:10.30699/ijmm.16.2.155
  • Fadli M, Saad A, Sayadi S, Chevalier J, Mezrioui N, Pagès J, Hassani L. 2012. Phytomedicine antibacterial activity of Thymus maroccanus and Thymus broussonetii essential oils against nosocomial infection – bacteria and their synergistic potential with antibiotics. Phytomedicine. 19:464–471. doi:10.1016/j.phymed.2011.12.003
  • Faleiro M. 2011. The mode of antibacterial action of essential oils. In: Méndez-Vilas A, editor. Science against microbial pathogens: communicating current research and technological advances. Badajoz: FORMATEX; p. 1143–1156. https://www.researchgate.net/publication/233920172_The_mode_of_antibacterial_action_of_essential_oils.
  • Fennane M, Tattou MI, El Oualidi J. 2014. Pteridophyta, Gymnospermae, Angiospermae (Lauraceae-Neuradaceae) : manuel de determination travaux de l’institut scientifique, serie botanique n°_ 40. In: Flore pratique du Maroc, vol. 3. Institut Scientifique Agdal, Rabat, Morocco.
  • Fennane M, Tattou MI. 1998. Catalogue des plantes vasculaires rares, menacées ou endémiques du Maroc. Bocconea [Internet]. http://www.israbat.ac.ma/wp-content/uploads/2016/08/FPM3_Extrait.pdf.
  • Folliero V, Franci G, Dell’Annunziata F, Giugliano R, Foglia F, Sperlongano R, De Filippis A, Finamore E, Galdiero M. 2021. Evaluation of antibiotic resistance and biofilm production among clinical strain isolated from medical devices. Int J Microbiol. 2021:9033278. doi:10.1155/2021/9033278
  • Garnacho-Montero J, Timsit JF. 2019. Managing Acinetobacter baumannii infections. Curr Opin Infect Dis. 32:69–76. 10.1097/QCO.0000000000000518.
  • Ghanimi R, Ouhammou A, El Atki Y, Cherkaoui M. 2021. Antioxidant and antibacterial activities of essential oils from three Moroccan species (Lavandula mairei Humbert, Lavandula dentata L. and, Lavandula stoechas L.). J Pharm Res Int. 33:64–71. doi:10.9734/jpri/2021/v33i45B32779
  • Kadri SS, Adjemian J, Lai YL, Spaulding AB, Ricotta E, Prevots DR, Palmore TN, Rhee C, Klompas M, Dekker JP, et al. 2018. Difficult-to-treat resistance in gram-negative bacteremia at 173 US hospitals: retrospective cohort analysis of prevalence, predictors, and outcome of resistance to all first-line agents. Clin Infect Dis. 67:1803–1814. 10.1093/cid/ciy378.
  • Kerekes EB, Vidács A, Takó M, Petkovits T, Vágvölgyi C, Horváth G, Balázs VL, Krisch J. 2019. Anti-biofilm effect of selected essential oils and main components on mono- and polymicrobic bacterial cultures. Microorganisms. 7:345. doi:10.3390/microorganisms7090345
  • Ksontini H, Kachouri F, El Abed S, Ibnsouda Koraichi S, Meftah H, Latrache H, Hamdi M. 2013. Dairy biofilm: an investigation of the impact on the surface chemistry of two materials: silicone and stainless steel. J Adhes Sci Technol. 27:783–793. doi:10.1080/01694243.2012.727153
  • Kyriakidis I, Vasileiou E, Pana ZD, Tragiannidis A. 2021. Acinetobacter baumannii antibiotic resistance mechanisms. Pathogens. 10:1–331. doi:10.3390/pathogens10030373
  • Laktib A, Hassi M, Hamadi F, Mimouni R, Bourouache M, Bihadassen B, Ait Alla A. 2018. Identification and antibiotic resistance of nosocomial bacteria isolated from the hospital environment of two intensive care units. Moroccan J Biol. 5:27–41.
  • Lee Ro C, Lee JH, Park M, Park KS, Bae IK, Kim YB, Cha CJ, Jeong BC, Lee SH. 2017. Biology of Acinetobacter baumannii: pathogenesis, antibiotic resistance mechanisms, and prospective treatment options. Front Cell Infect Microbiol. 7:55. 10.3389/fcimb.2017.00055.
  • Lee S, Al Razqan GS, Kwon DH. 2017. Antibacterial activity of epigallocatechin-3-gallate (EGCG) and its synergism with β-lactam antibiotics sensitizing carbapenem-associated multidrug resistant clinical isolates of Acinetobacter baumannii. Phytomedicine. 24:49–55. doi:10.1016/j.phymed.2016.11.007
  • Nazzaro F, Fratianni F, De Martino L, Coppola R, De Feo V. 2013. Effect of essential oils on pathogenic bacteria. Pharmaceuticals (Basel). 6:1451–1474. doi:10.3390/ph6121451
  • Ngasotter S, Mukherjee S, Singh SK, Bharti D, Haque R, Varshney S, Nanda C, Waikhom D, Devi MS, Singh AS. 2022. Prevalence, virulence, and antibiotic resistance of vibrio parahaemolyticus from seafood and its environment: an updated review. Mediterr J Infect Microbes Antimicrob. 11:3. doi:10.4274/mjima.galenos.2021.2021.3
  • Perez F, Hujer AM, Hujer KM, Decker BK, Rather PN, Bonomo RA. 2007. Global challenge of multidrug-resistant Acinetobacter baumanni. Antimicrob Agents Chemother. 51:3471–3484. doi:10.1128/AAC.01464-06
  • Rampelotto PH. 2010. Resistance of microorganisms to extreme environmental conditions and its contribution to astrobiology. Sustainability. 2:1602–1623. doi:10.3390/su2061602
  • Toole GO, Kaplan HB, Kolter R. 2000. Biofilm formation as microbial development. Annu Rev Microbiol. 54:49–79. doi:10.1146/annurev.micro.54.1.49
  • Tutar U. 2016. Study of the effect of essential oil of Salvia glutinosa L. on microbial biofilm formation by clinical isolates of Acinetobacter baumannii. AIP Conf Proc. 1726:1–5. doi:10.1063/1.4945935
  • Tutar U, Çelik C, Karaman İ, Ataş M, Hepokur C. 2016. Anti-biofilm and antimicrobial activity of Mentha pulegium L essential oil against multidrug-resistant Acinetobacter baumannii. Trop J Pharm Res. 15:1039–1046. doi:10.4314/tjpr.v15i5.20
  • Van Oss CJ, Chaudhury MK, Good RJ. 1988. Interfacial Lifshitz-van der waals and polar interactions in macroscopic systems. Chem Rev. 88:927–941. doi:10.1021/cr00088a006
  • Zineba G, Hassan L, Mostafa M, Abdellah H, Mohammed T, El Mostafa M. 2014. Virulence phenotype, physicochemical properties, and biofilm formation of Pseudomonas aeruginosa on polyethylene used in drinking water distribution systems. Water Resour. 42:98–107. doi:10.1134/S0097807815010042

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