Assessment of genotoxic effect of Ocimum basilicum L. and Linalool

Authors

DOI:

https://doi.org/10.33448/rsd-v9i9.6127

Keywords:

Ocimum basilicum; Micronucleus; Linalool; Genotoxic.

Abstract

Ocimum basilicum belongs to the Lamiaceae family, is popularly known as basil and can be found in several regions of the world, being the monoterpene Linalol or the main component of the essential oil of Ocimum basilicum L. Medicinally it is considered powerful antiseptic, carminative, digestive, insecticide and analgesic, besides having proven antibacterial, antifungal and antiviral activities. Knowing that evaluating the genotoxic activity of medicinal plants is extremely important as one of the stages of the toxicity study, this study aimed to analyze the genotoxic effect of basil essential oil and its active ingredient linalool. The micronucleus test on peripheral blood cells was used in the study for activities. Groups of three mices males and three females received, by gavage, the compounds in dose of 100 and 200 mg/kg of animal weight. The negative control group received only the dispersant of the sample (distilled water) and positive control received Cyclophosphamide 50 mg/kg of animal weight. Twenty-four hours after treatment, the animals were sacrificed, blood was collected from the caudal vein and made a smear on the slide. The obtained results showed the absence of genotoxic effect of tested compounds. Further studies of toxicity need to be made to the use of this plant in the treatment of diseases to be stimulated.

References

Andrade, A., Pinto, S. C., & Oliveira, R. S. (2006). Animais de laboratório: criação e experimentação. Fiocruz, Rio de Janeiro, 255-262.

Balmus, G., et al. (2015) A high-throughput in vivo micronucleus assay for genome instability screening in mice. Nature Protocols. 10, 205-215.

Benigni, R. (2005). Structure activity relationship studies of chemical mutagens and carcinogens mechanistic investigations and prediction approaches. Chem Rev., 105, 1767-1800.

Chiang, L. C., Ng, L. T., Cheng, P. W., Chiang, W., & Lin, C. C. (2005). Antiviral activities of extracts and selected pure constituents of Ocimum bacilicum. Clin Exp Pharmacol P, 32(10), 811-816.

Costa, R. M. A., & Menk, C. F. M. (2000). Biomonitoramento de mutagênese ambiental. BC&D, 3 (12), 24-26.

Doppalapudi, R. S., Riccio, E. S., Rausch, L. L., Shimon, J. A., Lee, P. S., Mortelmans, K. E., Kapetanovic, I. M., Crowell, J. A., Mirsalis, J. C. Evaluation of chemopreventive agents for genotoxic activity. (2007). Mutat Res., 629, 148-160.

Fletcher, J. P., Cassella, J. P., Hughes, D., Cassella, S. An evaluation of the mutagenic potential of commercially available tea tree oil in the United Kingdom. Int J Aromather. (2005). 15, 81-86.

Hayashi, M., Tice, R. R., Macgregor, J. T., Anderson, D., Blakey, D. H., Kirsch-Volders, M., Oleson, F. B. J. R., Pacchierotti, F., Romagna, F., Shimada, H., Sutou, S., Vannier, B. In vivo rodent erythrocyte micronucleus assay. (1994). Mutat Res., 312, 293-304.

Heinrich M. Ethnopharmacology in the 21st century - grand challenges. Front Pharmacol. (2010), 1(8).

Hussain, A. I., Anwar, F., Sherazi, S. T. H., & Przybylski, R. Chemical composition, antioxidant and antimicrobial activities of basil (Ocimum basilicum) essential oils depends on seasonal variations, Food Chem. (2008). 108, 986-995.

Jütte, R., Heinrich, M., Helmstädter, A., Langhorst, J., Meng, G., Niebling, W., et al. (2017). Herbal medicinal products – Evidence and tradition from a historical perspective. J Ethnopharmacol. 207, 220–225.

Lee, S. J., Umano, K., Shibamoto T., & Lee., K. G. (2005). Identification of volatile components in basil (Ocimum basilicum L.) and thyme leaves (Thymus vulgaris L.) and their antioxidant properties. Food Chem., 91, 131-137.

Omidbaigi, R., Hassani, A., & Sefidkon, F. Essential oil content and composition of sweet basil (Ocimum basilicum) at different irrigation regimes. (2003). J Essent Oil Bearing Plants., 6, 104-108.

Pereira, A. S., et al. (2018). Methodology of cientific research. [e-Book]. Santa Maria City. UAB / NTE / UFSM Editors.

Pereira, C. A. B. Teste estatístico para comparar proporções em problemas de citogenética. In: Rabello-Gay, M. N., Rodrigues, M. A. L. R., & Montelleone-Neto, R. (Eds.). (1991) Mutagênese, teratogênese e carcinogênese, métodos e critérios de avaliação. Ribeirão Preto: SBG/RBG, 113-121.

Ravid, U., Putievsky E., Katzir, I., Lewinsohn, E. (1997). Enantiomeric composition of linalool in the essential oils of Ocimum species and in commercial basil oils. Flavour Fragr. 12, 293-296.

Ribeiro, L. R., Salvadori, D. M. F., & Marques, E. K. Mutagênese ambiental. (2003). Editora Ulbra. Canoas: (1a ed.).

Santos, M. F. Estudo do potencial genotóxico do óleo essencial de Origanum vulgare L. (Orégano) em ratos Wistar, através do teste de micronúcleo. (2011). 66f. Dissertação de mestrado. Faculdade de Veterinária. Universidade Federal do Rio Grande do Sul, Rio Grande do Sul.

Silva, V. H. F., et al. Determinação do potencial genotóxico, toxicidade, índice mitótico de boldo e utilização de plantas medicinais em região rural próxima ao município de Muriaé (MG). (2015). Revista Científica Faminas, Belo Horizonte, 11 (2).

Telci, I., Bayram, E., Yilmaz, G., & Avci, B. (2006). Variability in essential oil composition of Turkish basils (Ocimum basilicum L.). Biochem Syst Ecol., 34, 489-497.

Wannissorn, B., Jarikasem, S., Siriwangchai, T., & Thubthimthed, S. (2005). Antibacterial properties of essential oils from Thai medicinal plants. Fitoterapia, 76, 233-236.

Downloads

Published

09/08/2020

How to Cite

SILVA, V. A. da; SOUSA, J. P. de; PAULA, A. F. R. de; PESSÔA, H. de L. F.; TAVARES, N. de A. C.; CUNHA, S. M. D. da; LIMA, E. de O. Assessment of genotoxic effect of Ocimum basilicum L. and Linalool. Research, Society and Development, [S. l.], v. 9, n. 9, p. e07996127, 2020. DOI: 10.33448/rsd-v9i9.6127. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/6127. Acesso em: 20 apr. 2024.

Issue

Section

Health Sciences