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:: Volume 1, Issue 4 (12-2025) ::
Journalaer 2025, 1(4): 157-166 Back to browse issues page
Production of white brine cheese containing coriander essential oil
Fatemeh Attar , Alireza Shahab Lavasani * , Bijan Khorshidpour
Abstract:   (766 Views)
Introduction: Coriander essential oil as a flavoring has many applications in food, especially Iranian white cheese, and this essential oil has a stronger antimicrobial effect on bacteria, especially the gram-positive type. The purpose of this research is to study the effect of different concentrations of coriander essential oil on the antioxidant, sensory, antimicrobial and chemical properties of white brine cheese during the 60-day storage period.
Material & Methods: The experiments of this research include DPPH (µ mol equivalent of Trolox/g), total phenol (µ gallic acid equivalent/g), acetaldehyde µg/g, sensory characteristics (flavor and aroma), characteristics Microbial includes the logarithm of the Staphylococcus aureus, and Escherichia coli CFU/g and chemical experiments such as acidity%, dry matter% and moisture%.
Results: The results related to the antioxidant activity of coriander essential oil showed that with increasing concentration of coriander essential oil, the amount of DPPH and total phenol increased significantly (p<0.01). Coriander essential oil had a significant effect on all the properties tested, including antioxidant, acetaldehyde, sensory, antimicrobial and chemical properties (p<0.01). The measurement of acetaldehyde during the storage period showed a decreasing trend, and the amount of acetaldehyde reduction during the storage period was higher in treatments containing essential oils. The samples containing essential oil had a lower sensory score than the control sample. The lowest amount of logarithm of staphylococcus aureus and Escherichia coli CFU/g is related to the treatment containing the highest concentration of coriander essential oil, T6 with 4000 ppm of coriander essential oil. The percentage of acidity showed an increasing trend during storage period. The amount of dry matter of the cheese samples increased during the 60-day storage period, and the amount of moisture decreased in parallel.
Conclusion: Overall, the results of this study showed that the concentration of 125 ppm of coriander essential oil as the minimum inhibitory concentration for Staphylococcus aureus (T2) can have a positive effect on sensory, microbial, chemical and antioxidant properties without negative effects, and it was selected as the best treatment.
Keywords: White brine cheese, Coriander essential oil, Antioxidant capacity, Sensory properties, Microbial properties, Chemical properties
Full-Text [PDF 809 kb]   (295 Downloads)    
Type of Study: Research | Subject: Special
Received: 2025/11/9 | Accepted: 2025/09/1 | Published: 2025/12/2
References
1. 1. Sadeghi, F. and Nategh, L., 2020. Investigating the sensory properties and antimicrobial effect of frankincense and shallots essential oil on Listeria monocytogenes bacteria in white brined cheese. Iranian Food Sci and Technol Res J. 16(4): 343-356. doi: 10. 22067/ifstrj.v16i4.80935 (In Persian)
2. 2. Burt, S., 2004. Essential oils: their antibacterial properties and potential applications in foods-a review. Int. J. Food Microbiol. 94(3): 223-253. doi: 10.1016/j. ijfoodmicro.2004.03.022
3. 3. Mildner-Szkudlarz, S., Zawirska-Wojtasiak, R., Obuchowski, W. and Goslinski, M., 2009. Evaluation of antioxidant activity of green tea extract and its effect on the biscuit’s lipid fraction oxidative stability. J. Food Sci. 74: S362-S370. doi: 10.1111/j.1750-3841.2009.01313.x
4. 4. Matasyoh, J.C., Maiyo, Z.C., Ngure, R.M. and Chepkorir, R., 2009. Chemical composition and antimicrobial activity of the essential oil of Coriandrum Sativum. J Food Chem. 113(2): 526-529. doi: 10.1016/j. foodchem.2008.07.097
5. 5. Shahab Lavasani, A., 2021. Proteolysis characteristics and aroma development during ripening of functional Iranian Lighvan cheese. J Food Process Preserv. 45(7): 1-10. https://doi.org/10.1111/jfpp.15615
6. 6. Qureshi, T.M., Amjad, A., Nadeem, M., Murtaza, M.A. and Munir, M., 2019. Antioxidant potential of a soft cheese (paneer) supplemented with the extracts of date (Phoenix dactylifera L.) cultivars and its whey. Asian Australas J Anim Sci. 32(10): 1591-1602. doi: 10.5713/ ajas.18.0750.
7. 7. El-Sayed, H.S. and El-Sayed, S.M., 2021. A modern trend to preserve white soft cheese using nano-emulsified solutions containing cumin essential oil. Environ Nanotechnol Monit Manag. 16(62): 100499. doi: 10. 1016/j.enmm.2021.100499
8. 8. Shahab Lavasani, A., 2018. Biochemical changes of Iranian probiotic Lighvan cheese. Czech J Food Sci. 36(2): 181-186. doi: 10.17221/453/2016-CJFS
9. 9. ISIRI, 6806-1. 2005. Microbiology of food and animal feed - Enumeration of coagulase-positive staphylococci (Staphylococcus and other species) - Test method - Part I Method of using Brad-Parker Agar culture medium. (In Persian)
10. 10. ISIRI, 7725-1. 2006. Water quality- Detection and enumeration of Escherichia coli and coliform bacteria Part 1: Membrane filtration method. (In Persian)
11. 11. Condurso, C., Verzera, A., Romeo, V., Ziino, M. and Conte, F., 2008. Solid-phase microextraction and gas chromatography mass spectrometry analysis of dairy product volatiles for the determination of shelf-life. Int Dairy J. 18(8): 819-825. doi: 10.1016/j.idairyj.2007.12. 005
12. 12. Shahab Lavasani, A., 2022. The Quality and Composition of Iranian Low-Salt UF-White Cheese. J Food Qual. 1: 1-13. doi: 10.1155/2022/3428838
13. 13. Bamdad, F., Kadivar, M. and Keramat, J., 2006. Evaluation of phenolic content and antioxidant activity of Iranian caraway in comparison with clove and BHT using model systems and vegetable oil. Int J Food Sci Technol. 41: 20 -27.
14. 14. Huange, B., Jingesheng, H., Xiaoquan, B., Hong, Z., Xincheng, Y. and Youwei, W., 2011. Antioxidant activity of bovine and porcinemeat treated with extracts from edible lotus (Nelumbo nucifera) rhizome knot and leaf. Meat Sci. 87(1): 46-53. doi: 10.1016/j.meatsci.2010. 09.001
15. 15. Kaur, C. and Kapoor, H.C., 2002. Anti‐oxidant activity and total phenolic content of some Asian vegetables. Int J Food Sci Technol. 37(2): 153-161. doi: 10.1046/j.1365. 2621.2002.00552.x
16. 16. Farah, H., Elbadrawy, E. and Al-Atoom, A.A., 2015. Evaluation of anti-oxidant and antimicrobial activities of ethanolic extracts of parsley (Petroselinum erispum) and coriander (Coriandrum sativum) plants grown in saudiarabia. Int J Adv Res. 3: 1244-1255.
17. 17. Omidi Mirzaei, M., Hojjati, M., Alizadeh Behbahani, B. and Noshad, M., 2020. Determination of chemical composition, antioxidant properties and antimicrobial activity of coriander seed essential oil on a number of pathogenic microorganisms. Iranian Food Sci Technol Res J. 16(2): 221-233. doi: 10.22067/ifstrj.v16i2.82025 (In Persian)
18. 18. Dinesh, P., Boghra, V. and Sharma, R., 2000. Effect of antioxidant principles isolated from mango (Mangifera indica L.) seed kernels on oxidative stability of ghee (butter fat). Journal of the Science of Food and Agriculture. 80(4): 522-526. doi: 10.1002/(SICI)1097. 0010(200003)80:4<522::AID-JSFA560>3.0.CO;2-R
19. 19. Fazlinejhad, J., Masouri, B., Parizadian Kavan, B., Khosravinia, H. and Forouharmehr, A., 2023. Effect of Kombucha in aflatoxin-contaminated diets on growth performance, antioxidant status and liver function of broiler chicken. J Ani Environ. 15(2): 129-140. doi: 10. 22034/AEJ.2022.347766.2825 (In Persian)
20. 20. Fatemi, A., Masouri, B. and Parizadian Kavan, B., 2022. Effects of vitamin E and peppermint (Mentha piperita L) on blood biochemical parameters and antioxidant status in broiler chicks under transportation stress. J Ani Environ. 14(3): 139-146. doi: 10.22034/AEJ. 2021.308662.2652 (In Persian)
21. 21. Sameen, A., 2009. Functional and technological properties of mozzarella cheese prepared from cow and buffalo milk. Ph.D thesis. University of Agriculture, Faisalabad, Pakistan. 165 p.
22. 22. Farahani, G.H., Ezatpanah, H. and Abbasi, S., 2014. Evaluation of some physicochemical, rheological and textural characteristics of salt White Brine cheese (Golpayegan cheese) during the ripening period. Food Sci Nutri. 11(3): 5-20. (In Persian)
23. 23. Azarnia, S., Ehsani, M., Mirhadi, A. and Yusefi, H., 1994. Evaluation of the process of proteolysis and its acceleration during the processing of Iranian white cheese. Research Journal No. 78, Publications of the Ministry of Construction Jihad, Education and Research Deputy, National Animal Husbandry Research Institute. (In Persian)
24. 24. Broomand, A., Hamedi, M., Emam Jomeh, Z., Razavi, S.H. and Gholmakani, M.T., 2008. Investigation on the antimicrobial effects of essential oils from dill and Coriander seeds on Staphylococcus aureus, Escherichia coli 0157:H7 and Salmonella typhimurium. Iranian Food Sci Technol Res J. 4(1): 59-68. (In Persian)
25. 25. Farshbaf Darhami, S., Ghiyami rad, M. and Mahmoodi, R., 2016. A comparative study of the antibacterial effect of aqueous and alcoholic extracts of coriander (Coriandrum sativum) on some pathogenic bacteria. J Health Food. 6(23): 35-42. (In Persian)
26. 26. Zabetian Hosseini, F., Mortazavi, S.A., Fazli Bazaz, B.S., Koocheki, A. and Bolourian, Sh., 2010. Study on the antimicrobial effect of Thymus vulgaris extract on the Log (CFU/g) salmonella enteritidise PT4 in mayonnaise. Iranian Food Sci Technol Res J. 6(2): 84-90. (In Persian)
27. 27. Semeniuc, C.A., Pop, C.R. and Rotar, A.M., 2017. Antibacterial activity and interactions of plant essential oil combinations against Gram-positive and Gram negative bacteria. J Food Drug Anal. 25(2): 403-408. doi: 10.1016/j.jfda.2016.06.002
28. 28. Bakhshi, F., Mirzaei, H. and Asefi, N., 2020. Effect of Basil Essential Oil on the Microbial and Sensory Characteristics of Iranian Traditional White Cheese During Ripening. J Vet Res. 75(1): 47-56. doi: 10. 22059/jvr.2018.258602.2798 (In Persian)
29. 29. Vitova, E., Loupancova, B., Zemanova, J., HAN Štoudkova, H., Brezina, P. and Babak, L., 2006. Solid Phase Microextraction for Analysis of Mould Cheese Aroma. Czech J Food Sci. 24(6): 268-274. doi: 10.17221/ 3324-CJFS
30. 30. Qian, M., Nelson, C. and Bloomer, S., 2002. Evaluation of fat-derived aroma compounds in blue cheese by dynamic headspace GC/olfactometry-MS. J Am Oil Chem Soc. 79(7): 663-667. doi: 10.1007/s11746-002-0540-4
31. 31. Abbasifar, A., Akhondzadeh basti, A., Karim, G., Misaghi, A., Bokaee, S., Gandomi, H., Gebeli javan, A., Hamedi, H. and Sari, A., 2007. Evaluation of the effect of Shirazi thyme essential oil on the behavior of Staphylococcus aureus in feta cheese. J Med Plants. 1(5): 105-115. (In Persian)
32. 32. Roshani, S., Gohari Ardebili, A. and Arianfar, A., 2015. Investigation on antimicrobial and antioxidant effects of Thymus vulgaris on mozzarella cheese. Res Innovation Food Sci Technol. 4(3): 233-246. https://doi. org/10.22101/JRIFST.2015.11.22.434 (In Persian)
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Attar F, Shahab Lavasani A, Khorshidpour B. Production of white brine cheese containing coriander essential oil. Journalaer 2025; 1 (4) :157-166
URL: http://journalaer.com/article-1-67-en.html


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Volume 1, Issue 4 (12-2025) Back to browse issues page
پژوهش های محیط زیست جانوری Journal of Animal Environmental Research
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