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Research Articles

Evaluation of toxicological and antimicrobial activity of lavender and immortelle essential oils

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Pages 190-197 | Received 14 Jun 2018, Accepted 15 Oct 2018, Published online: 04 Jan 2019

References

  • Askin Celik, T., and Aslanturk, O.S., 2007. Cytotoxic and genotoxic effects of Lavandula stoechas aqueous extracts. Biologia, 62, 292–296.
  • Bakkali, F., 2008. Biological effects of essential oils - a review. Food and Chemical Toxicology, 46 (2), 446–475.
  • Bignold, L. P., 2015. Principles of tumors. Elsevier Inc. Cambridge: Elsevier Inc. Academic Press.
  • Bonassi, S., 2008. Chromosomal aberration frequency in lymphocytes predicts the risk of cancer: results from a pooled cohort study of 22 358 subjects in 11 countries. Carcinogenesis, 29 (6), 1178–1183.
  • Cavanagh, H.M.A., and Wilkinson, J.M., 2002. Biological activities of lavender essential oil. Phytotherapy Research, 16 (4), 301–308.
  • Cavanagh, H.M.A., and Wilkinson, J.M., 2005. Lavender essential oil: a review. Australian Infection Control, 10 (1), 35–37.
  • Cui, H., et al., 2017. Edible film incorporated with chitosan and Artemisia annua oil nanoliposomes for inactivation of Escherichia coli O157:H7 on cherry tomato. International Journal of Food Science & Technology, 52 (3), 687–698.
  • Cui, H., et al., 2018a. Antimicrobial mechanism of clove oil on Listeria monocytogenes. Food Control, 94, 140–146.
  • Cui, H., et al., 2018b. Antibacterial activity and mechanism of Chuzhou chrysanthemum essential oil. Journal of Funtional Foods, 48, 159–166.
  • Cui, H., et al., 2018c. Fabrication of chitosan nanofibers containing tea tree oil liposomes against Salmonella spp. in chicken. LWT-Food Science and Technology, 96, 671–678.
  • Da Cruz Cabral, L., Pinto, V.F., and Patriarca, A., 2013. Application of plant derived compounds to control fungal spoilage and mycotoxin production in foods. International Journal of Food Microbiology, 166 (1), 1–14.
  • De Rapper, S., et al., 2013. The in vitro antimicrobial activity of Lavandula angustifolia essential oil in combination with other aroma-therapeutic oils. Evidence-Based Complementary and Alternative Medicine, 2013, 1.
  • Di Sotto, A., et al., 2011. Genotoxicity of lavender oil, linalyl acetate, and linalool on human lymphocytes in vitro. Environmental and Molecular Mutagenesis, 52 (1), 69–71.
  • Dias, D.A., Urban, S., and Roessner, U., 2012. A historical overview of natural products in drug discovery. Metabolites, 2 (2), 303–336.
  • Djihane, B., et al., 2017. Chemical constituents of Helichrysum italicum (Roth) G. Don essential oil and their antimicrobial activity against Gram-positive and Gram-negative bacteria, filamentous fungi and Candida albicans. Saudi Pharmaceutical Journal, 25 (5), 780–787.
  • Ekor, M., 2013. The growing use of herbal medicines: issues relating to adverse reactions and challenges in monitoring safety. Frontiers in Pharmacology, 4, 177.
  • Elghwaji, W., et al., 2017. Chemical composition, antimicrobial and antitumor potentiality of essential oil of Ferula tingitana L. Apiaceae grow in Libya. Pharmacognosy Magazine, 13 (51), 446–S451.
  • El-Ghamery, A.A., El-Kholy, M.A., and Abou El-Yousser, M.A., 2003. Evaluation of cytological effects of Zn2+ in relation to germination and root growth of Nigella sativa L. and Triticum aestivum L. Mutation Research, 537 (1), 29–41.
  • Eminovic, I., et al., 2016. Cytogenotoxic effects of two potential anticancer ruthenium(III) schiff bases complexes. Journal of Health Sciences, 6 (2), 112–120.
  • Eroglu, E.H., et al., 2010. In vitro genotoxic effects of four Helichrysum species in human lymphocytes cultures. Biological Research, 43, 177–182.
  • Eroglu, H.E., et al., 2009. Cytogenetic effects of nine Helichrysum taxa in human lymphocytes culture. Cytotechnology, 59, 65–72.
  • Fenech, M., 2007. Cytokinesis-block micronucleus cytome assay. Nature Protocols, 2 (5), 1084–1104.
  • Fiskesjo, G., 1985. The Allium test as a standard in environmental monitoring. Herreditas, 102, 99–112.
  • Fournomiti, M., et al., 2015. Antimicrobial activity of essential oils of cultivated oregano (Origanum vulgare), sage (Salvia officinalis), and thyme (Thymus vulgaris) against clinical isolates of Escherichia coli, Klebsiella oxytoca, and Klebsiella pneumoniae. Microbial Ecology in Health and Disease, 26, 23289.
  • Galimberti, F., et al., 2011. Anaphase catastrophe is a target for cancer therapy. Clinical Cancer Research, 17 (6), 1218–1222.
  • Gomurgen, A.N., 2005. Cytological effect of the potassium metabisulphite and potassium nitrate food preservative on root tips of Allium cepa L. Cytologia, 70, 119–128.
  • Han, X., Beaumont, C., and Stevens, N., 2017. Chemical composition analysis and in vitro biological activities of ten essential oils in human skin cells. Biochimie Open, 5, 1–7.
  • Herrero, O., et al., 2012. Toxicological evaluation of three contaminants of emerging concern by use of Allium cepa test. Mutation Research, 743 (1-2), 20–24.
  • Iwaki, T., et al., 2008. Multiple functions of ergosterol in the fission yeast Schizosaccharomyces pombe. Microbiology, 154 (3), 830–841.
  • Kalsbeek, D., and Golsteyn, R.M., 2017. G2/M phase checkpoint adaptation and micronuclei formation as mechanisms that contribute to genomic instability in human cells. International Journal of Molecular Sciences, 18 (11), 2344.
  • Lazutka, J.R., et al., 2001. Genotoxicity of dill (Anethum graveolens L.), peppermint (Mentha x piperita L.) and pine (Pinus sylvestris L.) essential oils in human lymphocytes and Drosophila melanogaster. Food and Chemical Toxicology, 39 (5), 485–492.
  • Mendoza, L., Wilkens, M., and Urzúa, A., 1997. Antimicrobial study of rezinous exudates and of diterpenoids and flavonoids isloated frome some Chilean Pseudographalium (Asteraceae). Journal of Ethnopharmacology, 58 (2), 85–88.
  • Mith, H., et al., 2014. Antimicrobial activities of commercial essential oils and their components against food-borne pathogens and food spoilage bacteria. Food Science & Nutrition, 2 (4), 403–416.
  • Moorhead, P., et al., 1960. Chromosome preparations of leucocytes cultured from human peripheral blood. Experimental Cell Research, 20 (3), 613–616.
  • Obroucheva, N., 2008. Cell elongation as an inseparable component of growth in terrestrial plants. Russian Journal of Developmental Biology, 39 (1), 13–24.
  • Pampalona, J., et al., 2016. Chromosome bridges maintain kinetochore-microtubule attachment throughout mitosis and rarely break during anaphase. PloS One, 11 (1), e0147420.
  • Prajitha, V., and Thoppil, J.E., 2016. Genotoxic and antigenotoxic potential of the aqueous leaf extracts of Amaranthus spinosus Linn. using Allium cepa assay. South African Journal of Botany, 102, 18–25.
  • Puškarova, A., et al., 2017. The antibacterial and antifungal activity of six essential oils and their cyto/genotoxicity to human HEL 12469 cells. Scientific Reports, 7, 8211.
  • Rank, J., 2003. The method of Allium anaphase-telophase chromosome aberration assay. Ekologija (Vilnius), 1, 38–42.
  • Sharifi-Rad, J., et al., 2017. Biological activity of essential oils: from plant chemoecology to traditional healing systems. Molecules, 22 (1), 70.
  • Shishkova, S., Rost, T.L., and Dubrovsky, J.G., 2007. Determinate root growth and meristem maintenance in angiosperms. Annals of Botany, 101 (3), 319–340.
  • Stepanek, O., et al., 2011. Interaction of late apoptotic and necrotic cells with vitronectin. PLoS ONE, 6 (5), e19243.
  • Uritu, C.M., et al., 2018. Medicinal plants of the family Lamiaceae in pain therapy: a review. Pain Research and Management, 2018, 1.
  • Zuzarte, M., et al., 2012. Lavandula luisieri essential oil as a source of antifungal drugs. Food Chemistry, 135 (3), 1505–1510.

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