Valorization of hydrosol derived from Rosmarinus officinalis cultivated in Metouia oasis

Auteurs-es

  • Imen Lahmar Sfax Faculty of Sciences
  • Nawfel Mosbahi
  • Lyubov Yotova

DOI :

https://doi.org/10.56027/JOASD.182023

Mots-clés :

Rosmarinus officinalis, hydrosol, total phenolic content, antioxidant potential, enzyme activities

Résumé

Hydrosols, are by-products of the hydrodistillation of plants. They consist of the distillation water in which very small amounts of essential oils remain dispersed. The aim of this study is the valorization of the hydrosol of a Tunisian aromatic and medicinal plant, Rosmarinus officinalis, by evaluating its phenolic content, antioxidant properties and enzyme activities. Through pH measurements, it has been determined that the hydrolate possesses an acidic character, with pH value falling within the range of 4.9. Total phenolic content assay and antioxidant assays DPPH radical scavenging activity unequivocally demonstrated the presence of antioxidants in the hydrosol and highlighted its potential to combat free radicals. The results showed that Rosmarinus officinalis presented an interested tyrosinase, polyphenol oxidase and lipoxygenase activities. Detected enzymes are identified for the first time in plant hydrosol and are searched for health care and manufacturing industries.

Références

Aćimović, M.G., Tešević, V.V., Smiljanić, K.T., Cvetković, M.T., Stanković, J.M., Kiprovski, B.M., Sikora, V.S. (2020). Hydrolates-by-products of essential oil distillation: Chemical composition, biological activity and potential uses. ADV Technologies 9, 54-70.

Axelrod, B., Cheesebourgh, T.M., Laakso, C. (1981). Lipoxygenase from soybeans. Methods Enzymololgy, Academic Press, New York, pp. 441-451.

Ban, L., Narasimhamoorthy, B., Zhao, L., Greaves, J.A., Schroeder, W.D. (2016). Antioxidant activities from different rosemary clonal lines. Food Chemistry 201, 259-263.

Baysal, T., Demirdöven, A. (2007). Lipoxygenase in fruits and vegetables: A review. Enzyme and Microbial Technology 40, 491-496.

Brand-Williams, W., Cuvelier, M.E., Berset, C. (1995). Use of a free radical method to evaluate antioxidant activity. LWT - Food Science and Technology 28, 25-30, https:// doi.org/10.1016/S0023-6438(95)80008-5.

Chorianopoulos, N.G., Giaouris, E.D., Skandamis, P.N., Haroutounian, S.A., Nychas, G.J.E. (2008). Disinfectant test against monoculture and mixed-culture biofilms composed of technological, spoilage and pathogenic bacteria: Bactericidal effect of essential oil and hydrosol of satureja thymbra and comparison with standard acid–base sanitizers. Journal of Applied Microbiology 104, 1586-1596.

D’Amato, S., Serio, A., López, C.C., Paparella, A. (2018). Hydrosols: Biological activity and potential as antimicrobials for food applications. Food Control 86, 126-137.

Djabou, N., Dib, M.E.A., Tabti, B., Costa, J., Muselli, A., (2014) Chemical composition and antioxidant activity of hydrosol extracts obtained by liquid–liquid extraction (LLE) of Daucus muricatus L. Journal of Essential Oil Research 26, 393-399, https://doi.org/ 10.1080/10412905.2014.964427

El Bouny, H., Ouahzizi, B., Sellam, K., Alem, C. (2021). Reconsidering the hydrosols of four aromatic plants from the Toudgha region (South East Of Morocco). Journal of analytical sciences and applied biotechnology 3(2), 126-132.

Fan, Y.F., Zhu, S.X., Hou, F.B., Zhao, D.F., Pan, Q.S., Xiang, Y.W., Qian, X.K., Ge, G.B., Wang, P. (2021). Spectrophotometric Assays for Sensing Tyrosinase Activity and Their Applications. Biosensors 11, 290. https://doi.org/10.3390/bios11080290

Georgieva, A., Dobreva, A., Tzvetanova, E., Alexandrova, A., Mileva, M. (2019). Comparative study of phytochemical profiles and antioxidant properties of hydrosols from Bulgarian Rosa Alba L. and Rosa Damascena Mill. Journal of essential oil bearing plants, 22(5), 1362-1371.

Girelli, A.M., Mattei, E., Messina, A. (2006). Phenols removal by immobilized tyrosinase reactor in on-line high performance liquid chromatography. Analytica Chimica Acta 580, 271-277.

Halaouli, S., Asther, M., Sigoillot, J.C., Hamdi, M., Lomascolo, A. (2006). Fungal yrosinases: new prospects in molecular characteristics, bioengineering and biotechnological applications. Journal of Applied Microbiology 100, 219-232.

Haloui, M., Louedec, L., Michel, J.B., Lyoussi, B. (2000). Experimental diuretic effects of Rosmarinus officinalis and Centaurium erythraea, Journal of Ethnopharmacology 71(3) 465-472.

Hamedi, A., Moheimani, S.M., Sakhteman, A., Etemadfard, H., Moein, M. (2017). An overview on indications and chemical composition of aromatic waters (hydrosols) as functional beverages in persian nutrition culture and folk medicine for hyperlipidemia and cardiovascular conditions. Evidence-Based Complementary and Alternative Medicine 22, 544-561.

Hasanuzzaman, M., Nahar, K., Hossain, M.S., Mahmud, J.A., Rahman, A., Inafuku, M., Oku, H., Fujita, M. (2017)0 Coordinated actions of glyoxalase and antioxidant defense systems in conferring abiotic stress tolerance in plants. International Journal of Molecular Sciences 18, 200.

Jakubczyk, K,. Tuchowska, A., Janda-Milczarek, K. (2021). Plant hydrolates- Antioxidant properties, chemical composition and potential applications. Biomedicine and Pharmacotherapy 142, 112033. https://doi.org/10.1016/j.biopha.2021.112033

Khan, M., Khan, S.T., Khan, N.A., Mahmood, A., Al-Kedhairy, A.A., Alkhathlan, H.Z. (2018). The composition of the essential oil and aqueous distillate of Origanum vulgare L. growing in Saudi Arabia and evaluation of their antibacterial activity. Arabian Journal of Chemistry 11, 1189-1200

Lahmar, I, Lubov, Y. (2016). Investigation of different enzyme activities from Pergularia tomentosa L. and Ecballium elaterium L. Journal of Chemical Technology and Metallurgy 51, 263-270.

Lamaison, J.L., Carnat, A. (1991). Contents of principal flavono¨ıdes in flowers and leaves of Crataegus monogyna Jacq. and Crataegus laevigata (Poiret) DC., in function of the vegetation. Medicinal Plants and Phytotherapy 25, 12-16.

Lerch, K., Ettlinger, L. (1972). Purification and characterization of a tyrosinase from Streptomyces glaucescens. European Journal of Biochemistry 31(3) 427-437.

Lowry, O.H., Resenbrough, N.J., Farr, A.L., Randall, R.J. (1951). Protein measurement with the Folin phenol reagent. Journal of Biological Chemistry 193(1) 265-275.

Paul, B., Gowda, L.R. (2000). Purification and characterization of a polyphenol oxidase from the seeds of field bean (Dolichos lablab). Journal of Agricultural and Food Chemistry 48(9), 3839-3846. doi:10.1021/jf000296s.

Pérez-Gilabert, M., Morte, A., Honrubia, M., Garcia-Carmona, F. (2001). Monophenolase activity of latent Terfezia claveryi tyrosinase: Characterization and histochemical localization. Physiologia Plantarum 133(2) 203-209.

Pourreza, N. (2013). Phenolic compounds as potential antioxidant. Jundishapur Journal of Natural Pharmaceutical Products 8(4), 149-150.

Rafie, H., Soheila, H., Grant, E. (2017). Rosmarinus officinalis (Rosemary): a novel therapeutic agent for antioxidant, antimicrobial, anticancer, antidiabetic, antidepressant, neuroprotective, anti-inflammatory, and anti-obesity treatment. Biomedical Journal of Scientific and Technical Research 1(4), 1098-1103.

Rao, B.R. (2012). Hydrosols and water-soluble essential oils of aromatic plants: Future economic products. Indian Perfum, 56, 29-33.

Rossetto, M., Vanzani, P., Mattivi, F., Lunelli, M., Scarpa, M., Rigo, A. (2002). Synergistic antioxidant effect of catechin and malvidin 3-glucoside on free radical-initiated peroxidation of linoleic acid in micelles. Archives of Biochemistry and Biophysics 408, 239-245.

Sanni, D.M. (2016). Isolation, partial purification and characterization of polyphenoloxidase from two species of African Mango seeds (Irvingia gabonensis and Irvingia wombolu). Advances in Biochemistry 4(4), 47-52. doi:10.11648/j.ab.20160404.12.

Singleton, V.L., Rossi, J.A. (1965). Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents. American journal of Enology and Viticulture 16(3), 144-158.

Tarun, J., Susan, J., Suria, J., Susan, V.J., Criton, S. (2014). Evaluation of pH of bathing soaps and shampoos for skin and hair care. Indian journal of dermatology, 59(5), 442.

Tomás-Barberán, F.A., Espín, J.C. (2001). Phenolic compounds and related enzymes as determinants of quality in fruits and vegetables. Journal of the Science of Food and Agriculture 81, 853-876.

Veldink, G.A., Hilbers, M.P., Nieuwenhuizen, W.F., Vliegenthart, J.F.G. (1998). In: Rowley, A.F., Kühn, K., Schewe, T. (eds.), Plant lipoxygenase: structure and mechanism in eicosanoids and related compounds in plants and animals. Portland Press, p. 69-95.

Walker, J.R., Ferrar, P.H. (1998). Diphenol oxiase, enzyme-catalysed browning and plant disease resistance. Biotechnology and Genetic Engineering Reviews 15, 457-498.

Yamamoto, J., Yamada, K., Naemura, A., Yamashita, T., Arai, R. (2005). Testing various herbs for antithrombotic effect. Nutrition Journal 21 (5) 580-587.

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Publié-e

2023-08-22

Comment citer

Lahmar, I., Mosbahi, N., & Yotova, L. (2023). Valorization of hydrosol derived from Rosmarinus officinalis cultivated in Metouia oasis. JOURNAL OF OASIS AGRICULTURE AND SUSTAINABLE DEVELOPMENT, 5(4), 1–8. https://doi.org/10.56027/JOASD.182023

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