International Journal of Innovative Approaches in Agricultural Research
Abbreviation: IJIAAR | ISSN (Online): 2602-4772 | DOI: 10.29329/ijiaar

Research article    |    Open Access
International Journal of Innovative Approaches in Agricultural Research 2025, Vol. 9(3) 246-258

Investigation of Aroma and Chemical Properties of Matured Kashar Cheese Produced without Using Starter Culture

Orhan Onur Aşkın

pp. 246 - 258   |  DOI: https://doi.org/10.29329/ijiaar.2025.1356.7

Publish Date: September 30, 2025  |   Single/Total View: 0/0   |   Single/Total Download: 0/0


Abstract

This study aimed to investigate the aroma profile, fatty acid composition, and general chemical characteristics of matured Kashar cheese (MKC) produced without starter cultures using mixed raw milk. A specific blend of cow (30%), goat (25%), and sheep (45%) milk was used in the production. Both milk samples and matured cheese were analyzed to determine changes during the ripening process. Texture profile analysis was also performed on cheese samples to evaluate the effects of compositional and processing variables.

A total of 65 volatile compounds were identified in MKC, whereas 47, 57, and 58 compounds were found in cow, sheep, and goat milk, respectively. Among these, 19 aroma compounds—particularly 2-pentanol, hexanoic acid ethyl ester, and 2,3-butanediol—were common to both milk and cheese samples, indicating their persistence or transformation during ripening. Notably, 22 fatty acids were detected exclusively in MKC, highlighting microbial and enzymatic activity during maturation.

Furthermore, variations in the chemical composition of milk, salt content, and the absence of starter cultures were found to influence the textural characteristics of the cheese. These findings provide insight into the complexity and uniqueness of traditional starter-free cheese production and contribute to the valorization of artisanal dairy practices.

Keywords: Aroma, Cheese, Fatty Acid, Matured Kashar, Milk


How to Cite this Article?

APA 7th edition
Askin, O.O. (2025). Investigation of Aroma and Chemical Properties of Matured Kashar Cheese Produced without Using Starter Culture. International Journal of Innovative Approaches in Agricultural Research, 9(3), 246-258. https://doi.org/10.29329/ijiaar.2025.1356.7

Harvard
Askin, O. (2025). Investigation of Aroma and Chemical Properties of Matured Kashar Cheese Produced without Using Starter Culture. International Journal of Innovative Approaches in Agricultural Research, 9(3), pp. 246-258.

Chicago 16th edition
Askin, Orhan Onur (2025). "Investigation of Aroma and Chemical Properties of Matured Kashar Cheese Produced without Using Starter Culture". International Journal of Innovative Approaches in Agricultural Research 9 (3):246-258. https://doi.org/10.29329/ijiaar.2025.1356.7

References
  1. AOCS 1990. Official method 925.10, 986.25. Association of Official Analytical Chemists, Washington, USA. [Google Scholar]
  2. AOCS 2011. Official method 960.52. Association of Official Analytical Chemists, Washington, USA. [Google Scholar]
  3. AOCS 2016. Official method 942.15, 981.12. Association of Official Analytical Chemists, Washington, USA. [Google Scholar]
  4. Askin B (2020) Some properties of Kirklareli ripened white cheese. Milchwissenschaft, 73: 16-22. [Google Scholar]
  5. Bargo F, Muller LD, Delahoy JE, Cassidy TW (2002) Performance of high producing dairy cows with three different feeding systems combining pasture and total mixed rations. International Journal of Dairy Science, 85: 2960-2975. [Google Scholar]
  6. Bontinis TG, Mallatou H, Alichanidis E, Kakouri A, Samelis J (2008) Physicochemical, microbiological and sensory changes during ripening and storage of Xinotyri, a traditional Greek cheese from raw goat’s milk. International Journal of Dairy Technology, 61: 229–236. [Google Scholar]
  7. Bovolenta S, Romanzin A, Corazzin M, Spanghero M, Aprea E, Gasperi F, Piasentier E (2014) Volatile compounds and sensory properties of Montasio cheese made from the milk of Simmental cows grazing on alpine pastures. Journal of Dairy Science, 97(12) : 7373-7385. [Google Scholar]
  8. Combs JG, Ketchen DJ, Perryman JRAA, Donahue MS (2007) The moderating effect of CEO power on the board composition–firm performance relationship. Journal of Management Studies, 44: 1299-1323. [Google Scholar]
  9. Curioni PMG, Bosset JO (2002) Key odorants in various cheese types as determined by gas chromatography-olfactometry. International Journal of Dairy Technology, 12: 959-984. [Google Scholar]
  10. Elgersma A, Waver AC, Nalẹcztarwacka T (2006) Grazing versus indoor feeding: effects on milk quality. Grassland Science, 11: 419-427. [Google Scholar]
  11. Gulati S, Zouk AN, Kalehoff JP, Wren CS, Davison PN, Kirkpatrick DP, Bhatt SP, Dransfield MT, Wells JM (2018) The use of a standardized order set reduces systemic corticosteroid dose and length of stay for individuals hospitalized with acute exacerbations of COPD: a cohort study. The International Journal of Chronic Obstructive Pulmonary Disease, 13: 2271-2278. [Google Scholar]
  12. Gunasekaran S, Ak MM (2003) Cheese Rheology and Texture. Boca Raton: CRC Press LLC. [Google Scholar]
  13. Hayaloğlu AA, Özer B (2011) Peynirde olgunlaşma (s 173-209), Peynir Biliminin Temelleri, Sidas Medya Ltd. Şti., İzmir, 639s. [Google Scholar]
  14. Kaya S (2012) Effect of salt on hardness and whiteness of Gaziantep Cheese during short-term brining. Journal of Food Engineering, 52(1): 155-159. [Google Scholar]
  15. Leksir C, Boudalia S, Moujahed N, Chemmam, M (2019) Traditional dairy products in Algeria: case of Klila cheese. Journal of Ethnic Foods, 6(7): 2-14. [Google Scholar]
  16. Ma X, James B, Balaban MO, Zhang L, Emanuelsson-Patterson EAC (2013) Quantifying blistering and browning properties of mozzarella cheese. Part II: cheese with different salt and moisture contents. Food Research International, 54: 917–921. [Google Scholar]
  17. Mcsweeney PLH, Sousa MJ. (2000) Biochemical pathways for the production of flavour compounds in cheeses during ripening: a review. Lait, 80: 293-324. [Google Scholar]
  18. O’callaghan TF, Hennessy D, Mcauliffe S, Kilcawley KN, O’donovan M, Dillon P, Ross RP, Stanton C (2016) Effect of pasture versus indoor feeding systems on raw milk composition and quality over an entire lactation. International Journal of Dairy Science, 99: 9424-9440. [Google Scholar]
  19. Paquot C (1979) Standard methods for the analysis of oils, fats and derivatives. 6th Ed. Pergamon Press, Oxford UK. [Google Scholar]
  20. Pinho C, Pérès O, Ferreira IMPLVO (2003) Solid-phase microextraction of volatile compounds in Terrincho ewe cheese. Comparison of different fibers. Journal of Chromatography A, 1011: 1-9. [Google Scholar]
  21. Qian M, Reineccius GA (2003a) Quantification of aroma compounds in Parmigiano-Reggiano cheese by a dynamic headspacegas chromatography-mass spectrometry technique and calculation of odor activity value. International Journal of Dairy Science, 86: 770–776. [Google Scholar]
  22. Qian M, Reineccius G (2003b) Aroma extract dilution analysis of Parmigiano Reggiano cheese. Journal of Food Science, 68(3): 794-798. [Google Scholar]
  23. Salinaz-Valdés A, De La Rosa Millán J, Serna-Saldíva So, Chuck-Hernández C. (2015) Yield and textural characteristics of Panela Cheeses produced with dairy vegetable protein (soybean or peanut) blends supplemented with transglutaminase. Journal of Food Science, 80(12): 2950-2956. [Google Scholar]
  24. Sulejmani E, Hayaloglu Aa, Rafajlovska V. (2014) Study of the chemical composition, proteolysis, volatile compounds, and textural properties of industrial and traditional Beaten (Bieno sirenje) ewe milk cheese. International Journal of Dairy Science, 97: 1210-1224.Mitchell, J.A. (2017). How citation changed the research world. The Mendeley, pp. 26-28. [Google Scholar]