Using Clove Essential Oil to Increase the Nutritional Potential of Industrial Fresh Double Cream Cheese — Oak Academic Publishing
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Using Clove Essential Oil to Increase the Nutritional Potential of Industrial Fresh Double Cream Cheese
Ecole Supérieure des Industries Alimentaires de Tunis, Tunis, Tunisia
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Université Libre de Tunis, Tunis, Tunisia
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Laboratory of Management and Valorization of Forest Resources, National Institute for Research in Rural Engineering Water and Forest (INRGREF), University of Carthage, Ariana, Tunisia
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Université Libre de Tunis, Tunis, Tunisia
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Le Groupement Interprofessionnel des Viandes Rouges et du Lait (GIVLait), Tunis, Tunisia
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Ecole Supérieure des Industries Alimentaires de Tunis, Tunis, Tunisia
1 Ecole Supérieure des Industries Alimentaires de Tunis, Tunis, Tunisia
2 Université Libre de Tunis, Tunis, Tunisia
3 Laboratory of Management and Valorization of Forest Resources, National Institute for Research in Rural Engineering Water and Forest (INRGREF), University of Carthage, Ariana, Tunisia
4 Université Libre de Tunis, Tunis, Tunisia
5 Le Groupement Interprofessionnel des Viandes Rouges et du Lait (GIVLait), Tunis, Tunisia
6 Ecole Supérieure des Industries Alimentaires de Tunis, Tunis, Tunisia
The present study was a potential application of Clove Essential Oil (CEO) in industrial fresh double cream cheese in order to lengthen its conservation and to improve its antioxidant potential. In this work, CEO was extracted by hydro distillation, and then analyzed by GC-MS; 24 components of clove essential oil were identified. Eugenol was the major component (57.66%). Its antimicrobial properties against E. coli , Salmonella enteritidis and Staphylococcus aureus , were evaluated by disc diffusion method and minimal inhibitory concentration (MIC). As for, the antioxidant activity of CEO was evaluated by DPPH assay method. An optimum content of CEO (0.37%) was calculated by mixing plan carried out by Expert design software and then added to studied cheese. The responses, fixed from the beginning, for this mixing plan were: minimum inhibitory concentration (MIC), antioxidant activity (IC 50 ), taste and odor intensity and global appreciation. The results found on the cheese supplemented with the optimum content of CEO showed antioxidant activity (IC 50 = 0.146) was relatively important compared to conventional cheese (IC 50 = 0.477). In fact, the incorporation of CEO in cheese may strongly improve its oxidative stability. Cheese antioxidant activity was not affected during the storage period for 13 days. Results showed also that the fresh double cream cheese could be stored at refrigerated temperature with good taste and odor during the period of 13 days due to antimicrobial properties given by CEO, that suggest lengthening its shelf life.
Jeanet, R., Croguennec Schuck, P. and Brule, G. (2006) Science des aliments: Tome 2, Technologies des produits alimentaires. Tec & Doc Lavoisier, Paris, 456 p.
López-Pedemonte, T.J., Roig-Sagués, A.X., Trujillo, A.J., Capellas, M. and Guamis, B. (2003) Inactivation of Spores of Bacillus cereus in Cheese by High Hydrostatic Pressure with the Addition of Nisin or Lysozyme. Journal of Dairy Science, 86, 3075-3081. https://doi.org/10.3168/jds.S0022-0302(03)73907-1
Scharfen, E.C., Mills, D.A. and Maga, E.A. (2007) Use of Human Lysozyme Transgenic Goat Milk in Cheese Making: Effects on Lactic Acid Bacteria Performance. Journal of Dairy Science, 90, 4084-4091. https://doi.org/10.3168/jds.2006-808
Cristina, C., Annalisa, L., Fabio, L., Amalia, C. and Alessandro, D.N.M. (2017) Application of Preservation Strategies to Improve the Shelf Life of Spreadable Cheese. Food Packaging and Shelf Life, 11, 16-20. https://doi.org/10.1016/j.fpsl.2016.11.001
Hasneen, D.F., Zaki, N.L., Abbas, M.S., Soliman, A.S., Ashoush, I.S. and Fayed, A.E. (2020) Comparative Evaluation of Some Herbs and Their Suitability for Skimmed Milk Yoghurt and Cast Kariesh Cheese Fortification as Functional Foods. Annals of Agricultural Sciences, 65, 6-12. https://doi.org/10.1016/j.aoas.2020.05.001
El Hatmi, H., Jrad, Z., Mkadem, W., Chahbani, A., Oussaief, O., Ben Zid, M., Nouha, M., Zaidi, S., Khorchani, S., Belguith, K. and Mihoubi, N.B. (2020) Fortification of Soft Cheese Made from Ultrafiltered Dromedary Milk with Allium roseum Powder: Effects on Textural, Radical Scavenging, Phenolic Profile and Sensory Characteristics. LWT Food Science and Technology, 132, Article ID: 109885. https://doi.org/10.1016/j.lwt.2020.109885
Sulejmani, E., Sahingil, D. and Hayaloglu, A.A. (2020) A Comparative Study of Compositional, Antioxidant Capacity, ACE-Inhibition Activity, RP-HPLC Peptide Profile and Volatile Compounds of Herbal Artisanal Cheeses. International Dairy Journal, 111, Article ID: 104837. https://doi.org/10.1016/j.idairyj.2020.104837
Voon, H.C., Bhat, R. and Gulam, R. (2012) Flower Extracts and Their Essential Oils as Potential Antimicrobial Agents. Comprehensive Reviews Food Science and Food Safety, 11, 34-55. https://doi.org/10.1111/j.1541-4337.2011.00169.x
Burt, S. (2004) Essential Oils: Their Antibacterial Properties and Potential Applications in Foods—A Review. International Journal of Food Microbiology, 94, 223-253. https://doi.org/10.1016/j.ijfoodmicro.2004.03.022
Lanciotti, R., Gianotti, A., Patrignani, F., Belletti, N., Guerzoni, M.E. and Gardini, F. (2004) Use of Natural Aroma Compounds to Improve Shelf-Life and Safety of Minimally Processed Fruits. Trends in Food Science & Technology, 15, 201-208. https://doi.org/10.1016/j.tifs.2003.10.004
Bajpai, V.K., Sharma, A. and Baek, K.H. (2013) Antibacterial Mode of Action of Cudrania tricuspidata Fruit Essential Oil, Affecting Membrane Permeability and Surface Characteristics of Food-Borne Pathogens. Food Control, 32, 582-590. https://doi.org/10.1016/j.foodcont.2013.01.032
Ben Ei Hadj Ali, I., Chaouachi, M., Bahri, R., Chaieb, I., Boussaïd, M. and Harzallah-Skhiri, F. (2015) Chemical Composition and Antioxidant, Antibacterial, Allelopathic and Insecticidal Activities of Essential Oil of Thymus algeriensis Boiss. et Reut. Industrial Crops and Products, 77, 631-639. https://doi.org/10.1016/j.indcrop.2015.09.046
Holley, R.A. and Patel, D. (2005) Improvement in Shelf-Life and Safety of Perishable Foods by Plant Essential Oils and Smoke Antimicrobials. Food Microbiology, 22, 273-292. https://doi.org/10.1016/j.fm.2004.08.006
Bakkali, F., Averbeck, S., Averbeck, D. and Idaomar, M. (2008) Biological Effects of Essential Oils—A Review. Food and Chemical Toxicology, 46, 446-475. https://doi.org/10.1016/j.fct.2007.09.106
Ghasemnezhad, M., Sherafati, M. and Payvast, G.A. (2011) Variation in Phenolic Compounds, Ascorbic Acid and Antioxidant Activity of Five Coloured Bell Pepper (Capsicum annum) Fruits at Two Different Harvest Times. Journal of Functional Foods, 3, 44-49. https://doi.org/10.1016/j.jff.2011.02.002
Kim, J., Marshall, M.R. and Wei, C.I. (1995) Antibacterial Activity of Some Essential Oil Components against Five Foodborne Pathogens. Journal of Agricultural and Food Chemistry, 43, 2839-2845. https://doi.org/10.1021/jf00059a013
Artiga-Artigas, M., Acevedo-Fani, A. and Martín-Belloso, O. (2017) Improving the Shelf Life of Low-Fat Cut Cheese Using Nanoemulsion-Based Edible Coatings Containing Oregano Essential Oil and Mandarin Fiber. Food Control, 76, 1-12. https://doi.org/10.1016/j.foodcont.2017.01.001
Bedoya-Serna, C.M., Dacanal, G.C., Fernandes, A.M. and Pinho, S.C. (2018) Antifungal Activity of Nanoemulsions Encapsulating Oregano (Origanum vulgare) Essential Oil: in Vitro Study and Application in Minas Padrão Cheese. Brazilian Journal of Microbiology, 49, 929-935. https://doi.org/10.1016/j.bjm.2018.05.004
Can Seydim, A., Sarakus-Tutal, G. and Sogut, E. (2020) Effect of Whey Protein Edible Films Containing Plant Essential Oils on Microbial Inactivation of Sliced Kasar Cheese. Food Packaging and Shelf Life, 26, Article ID: 100567. https://doi.org/10.1016/j.fpsl.2020.100567
Fancello, F., Petretto, G.L., Marceddu, S. and Severino Zara. T.V. (2020) Antimicrobial Activity of Gaseous Citrus limon var pompia Leaf Essential Oil against Listeria monocytogenes on Ricotta Salata Cheese. Food Microbiology, 87, Article ID: 103386. https://doi.org/10.1016/j.fm.2019.103386
Gulcin, İ., Elmastaş, M. and Aboul-Enein, H.Y. (2012) Antioxydant Activity of Clove Oil—A Powerful Antioxidant Source. Arabian Journal of Chemistry, 5, 489-499. https://doi.org/10.1016/j.arabjc.2010.09.016
Kamel, C. (2001) Tracing Modes of Action and Roles of Plant Extracts in Non-Ruminants. In: Garnsworthy, P.C. and Wiseman, J., Eds., Recent Advances in Animal Nutrition, Nottingham University Press, Nottingham, 130-150.
Dragland, S., Senoo, H., Wake, K., Holte, K. and Blomhoff, R. (2003) Several Culinary and Medicinal Herbs Are Important Sources of Dietary Antioxydants. The Journal of Nutrition, 133, 1286-1290. https://doi.org/10.1093/jn/133.5.1286
Thanissery, R., Kathariou, S. and Smith, D.P. (2014) Rosemary Oil, Clove Oil, and a Mix of Thyme-Orange Essential Oils Inhibit Salmonella and Campylobacter in Vitro. Journal of Applied Poultry Research, 23, 221-227. https://doi.org/10.3382/japr.2013-00888
Smith-Palmer, A., Stewart, J. and Fyfe, L. (2001) The Potential Application of Plant Essential Oils as Natural Food Preservatives in Soft Cheese. Food Microbiology, 18, 463-470. https://doi.org/10.1006/fmic.2001.0415
Bakheit, A.M. and Foda, M.I. (2012) Sensory Evaluation and Antioxidant Activity of New Mudaffara Cheese with Spices under Different Storage Temperatures. Research Journal of Applied Sciences, 8, 3143-3150.
Ghazghazi, H., Essghaier, B., Riguene, H., Rigane, G., El Aloui, M., Oueslati, M., Ben Salem, R., Sadfi Zouaoui, N., Nasera, Z. and Laarbi Khouja, M. (2019) A Phytochemical Analysis, Antioxidant and Antimicrobial Activities of Eucalyptus Essential Oil: A Comparative Study between Eucalyptus marginata L. and Eucalyptus paucilora L. Revue Romaine de Chimie, 64, 1055-1062. https://doi.org/10.33224/rrch/2019.64.12.05
Singleton, V.L., Orthofer, R. and Lamuela-Raventos, R.M. (1999) Analysis of Total Phenols and Other Oxidation Substrates and Antioxidants by Means of Folin-Ciocalteu Reagent. Methods in Enzymology, 299, 152-178. https://doi.org/10.1016/S0076-6879(99)99017-1
De carvalho, R.J., De souza, G.T., Honorio, V.G., De sousa, J.P., Da conceiḉăo, M.L. and Maganani, M. (2015) Comparative Inhibitory Effects of Thymus vulgaris L. Esential Oil against Staphylococcus aureus, Listeria monocytogenes and Mesophilic Starter Co-Culture in Cheese-Mimicking Models. Food Microbiology, 52, 59-65. https://doi.org/10.1016/j.fm.2015.07.003
Al-Aamri, M.S., AL-Aboussi, N.M., Al-Jabri, S.S., Alam, T. and Khan, S.A. (2018) Chemical Composition and In-Vitro Antioxidant and Antimicrobial Activity of the Essential Oil of Citrus aurantifolia L. Leaves Grown in Eastern Oman. Journal of Taibah University Medical Sciences, 13, 108-112. https://doi.org/10.1016/j.jtumed.2017.12.002
Hassanie, M.F.R., Mahgoub, S.A. and El-Zahar, K.M. (2014) Soft Cheese Supplemented with Black Cumin Oil: Impact on Food Borne Pathogens and Quality during Storage. Saudi Journal of Biological Sciences, 21, 280-288. https://doi.org/10.1016/j.sjbs.2013.10.005
Yang, B., Zhao, H., Cui, S., Wang, Y., Xia, X., Xi, M., Wang, X., Meng, J. and Ge, W. (2014) Prevalence and Characterization of Salmonella enterica in Dried Milk-Related Infant Foods in Shaanxi, China. Journal of Dairy Science, 97, 6754-6760. https://doi.org/10.3168/jds.2014-8292
TuğçeTunç, M. and Koca, İ. (2019) Ohmic Heating Assisted Hydrodistillation of Clove Essential Oil. Industrial Crops and Products, 141, Article ID: 111763. https://doi.org/10.1016/j.indcrop.2019.111763
Hudaib, M. and Aburjai, T. (2007) Volatile Components of Thymus vulgaris L. from Wild-Growing and Cultivated Plants in Jordan. Flavour and Fragrance Journal, 22, 322-327. https://doi.org/10.1002/ffj.1800
Hossain, M.A., Rashid Al Harbi, S.R., Mohamed Weli, A., Al-Riyami, Q. and Al-Sabahi, J.N. (2014) Comparison of Chemical Constituents and Antimicrobial Activities of Three Essential Oils from Three Different Brands’ Clove Samples Collected from Gulf Region. Asian Pacific Journal of Tropical Disease, 4, 262-268. https://doi.org/10.1016/S2222-1808(14)60570-3
Mektrirata, R., Janngeon, K., Pikulkaewc, S. and Okonogi, S. (2016) Evaluation of Cytotoxic and Inflammatory Properties of Clove Oil Microemulsion in Mice. Asian Journal of Pharmaceutical Science, 11, 231-232. https://doi.org/10.1016/j.ajps.2015.11.020
Silvestri J.D.F., Paroul N., Czyewski E., et al. (2018) Perfil da composição química e atividadesantibacteriana e antioxidante do oleoessencial do cravo-da-índia (Eugenia caryophyllata Thunb.). Revista Ceres, 57, 589-594. https://doi.org/10.1590/S0034-737X2010000500004
Radünz, M., Martins da Trindade, M.L., Radünz, A.L., Dellinghausen Borges, C., Avila Gandra, E. and Helbig, E. (2018) Antimicrobial and Antioxidant Activity of Unencapsulated and Encapsulated Clove (Syzygium aromaticum, L.) Essential Oil. Food Chemistry, 276, 180-186. https://doi.org/10.1016/j.foodchem.2018.09.173
Zhang, Y., Wang, Y., Zhu, X., Cao, P., Wei, S. and Lu, Y. (2017) Antibacterial and Antibiofilm Activities of Eugenol from Essential Oil of Syzygium aromaticum (L.) Merr. & L. M. Perry (Clove) Leaf against Periodontal Pathogen Porphyromonas gingivalis. Microbial Pathogenesis, 113, 396-402. https://doi.org/10.1016/j.micpath.2017.10.054
Ebani, V.V., Najar, B., Bertelloni, F., Pistelli, L., Mancianti, F. and Nardoni, S. (2018) Chemical Composition and in Vitro Antimicrobial Efficacy of Sixteen Essential Oils against Escherichia coli and Aspergillus fumigates Isolated from Poultry. Journal of Veterinary Science, 5, Article No. 62. https://doi.org/10.3390/vetsci5030062
Teles, A.M., Silva-Silva, J.V., Fernandes, J.M.P., Abreu-Silva, A.L., da Silva Calabrese, K., Filho, N.E.M., Mouchrek, A.N. and Almeida-Souza, F. (2021) GC-MS Characterization of Antibacterial, Antioxidant, and Antitrypanosomal Activity of Syzygium aromaticum Essential Oil and Eugenol. Evidence-Based Complementary and Alternative Medicine, 2021, Article ID: 6663255. https://doi.org/10.1155/2021/6663255
Babaglu, H.C., Bayrak, A., Ozdemir, N. and Ozgun, N. (2017) Encapsulation of Clove Essential Oil in Hydroxypropyl Beta-Cyclodextrin for Characterization, Controlled Release, and Antioxidant Activity. Journal of Food Processing and Preservation, 41, e13202. https://doi.org/10.1111/jfpp.13202
Lee, W.G. and Shibamoto, T. (2001) Antioxidant Property of Aroma Extract Isolated from Clove Buds. Food Chemistry, 74, 443-448. https://doi.org/10.1016/S0308-8146(01)00161-3
Shan, B., Cai, Y.Z., Sun, M. and Corke, H. (2005) Antioxidant Capacity of 26 Spice Extracts and Characterization of Their Phenolic Constituents. Journal of Agricultural and Food Chemistry, 53, 7749-7759. https://doi.org/10.1021/jf051513y
Shabir, G., Anwar, F., Sultana, B., Khalid, Z.M., Afzal, M., Khan Q.M. and Ashrafuzzaman. M. (2011) Antioxidant and Antimicrobial Attributes and Phenolics of Different Solvent Extracts from Leaves, Flowers and Bark of Gold Mohar. Molecules, 16, 7302-7319. https://doi.org/10.3390/molecules16097302
Burt, S.A. and Reinders, R.D. (2003) Antibacterial Activity of Selected Plant Essential Oil against Escherchia coli O157:H7. Letters in Applied Microbiology, 36, 162-167. https://doi.org/10.1046/j.1472-765X.2003.01285.x
Dorman, H.J. and Deans, S.G. (2000) Antimicrobial Agents from Plants: Antibacterial Activity of Plant Volatile Oils. Journal of Applied Microbiology, 88, 308-316. https://doi.org/10.1046/j.1365-2672.2000.00969.x
Smith-Palmer, A.J., Stewart, J. and Fyfe, L. (1998) Antimicrobial Properties of Plant Essential Oils and Essences against Five Important Food-Borne Pathogens. Letters in Applied Microbiology, 26, 118-122. https://doi.org/10.1046/j.1472-765X.1998.00303.x
Hammer, K.A., Carson, C. and Riley, T. (1999) Antimicrobial Activity of Essential Oils and Other Plant Extracts. Journal of Applied Microbiology, 86, 985-990. https://doi.org/10.1046/j.1365-2672.1999.00780.x
Oueslati, S., Trabelsi, N., Boulaaba, M., Legault, J. and Ksouri, R. (2012) Evaluation of Antioxidant Activities of the Edible and Medicinal Suaeda Species and Related Phenolic Compounds. Industrial Crops and Products, 36, 513-518. https://doi.org/10.1016/j.indcrop.2011.10.006
Olivera, M.S., Costa, W.A., Pereira, D.S., Botelho, J.R.S., Menezes, T.O.A, Andrade, E.H.A., Silva, S.H.M., Filho, A.P.S.S. and Carvalho, R.N. (2016) Chemical Composition and Phytotoxic Activity of Clove (Syzygium aromaticum) Essential Oil Obtained with Supercritical CO2. The Journal of Supercritical Fluids, 118,185-193. https://doi.org/10.1016/j.supflu.2016.08.010
Yamaguchi, T., Takamura, H., Matoba, T. and Ferao, J. (1998) HPLC Method for the Evaluation of the Free Radical-Scavenging Activity of Foods by Using 1,1-Diphenyl-2-Picrylhydrazyl. Bioscience, Biotechnology, and Biochemistry, 62, 1201-1204. https://doi.org/10.1271/bbb.62.1201
Shan, B., Cai, Y.Z., Brooks, J.D. and Corke, H. (2011) Potential Application of Spice and Herb Extracts as Natural Preservatives in Cheese. Journal of Medicinal Food, 14, 284-290. https://doi.org/10.1089/jmf.2010.0009