1. Abd El-Salam, M. H., Alichanidis, E. and Zerfiridis, G. K. 1993. Domiati and Feta Type Cheese. In: " Cheese: Chemistry, Physics and Microbiology", (Ed): Fox, P. F.. Elsevier Applied Science, London, UK, PP. 301–335.
2. AOAC. 1995. Official Method of Analysis of the Association of Official Agricultural Chemists: Method Numbers: 920.123, 933.05. Washington DC.
3. AOAC, 2007. Official Method of Analysis: Method Numbers: 971.19. 18th Edition, 2005, Current through Revision 2, 2007 (On- line). AOAC International, Gaithersburg, MD.
4. Ates, G. and Patir, B. 2001. Investigations on Sensorial, Chemical and Microbiological Features of Tulum Cheese with Starter Culture during Maturation. Firat Universitesi Saglik Bilimleri Dergisi., 15: 45–56.
5. Azarnia, S., Ehsani, M. R. and Mirhadi, S. A. 1997. Evaluation of the Physicochemical Characteristics of the Curd during the Ripening of Iranian Brine Cheese. Int. Dairy J., 7: 473-478.
6. Barbut, S. 1995. Effect of Sodium Level on the Microstructure and Texture of Whey Protein Isolate Gels. Food. Res. Int., 28: 437-443.
7. Belton, P. S., Saffa, A. M. and Wilson, R. H. 1987. Use of Fourier Transform Infrared Spectroscopy for Quantitative Analysis: A Comparative Study of Different Detection Methods. Analyst., 112: 1117-1120.
8. Brummel, S. E. and Lee, K. 1990. Soluble Hydrocolloids Enable Fat Reduction in Process Cheese Spreads. Food Sci., 55: 1290–1307.
9. Carunchia Whetstine, M. E., Drake, M. A., Nelson, B. K. and Barbano, D. M. 2006. Flavor Profiles of Full-fat and Reduced-fat Cheese and Cheese Fat Made from Aged Cheddar with the Fat Removed Using a Novel Process. J. Dairy Sci., 89: 505–517.
10. Chen, M. and Irudayaraj, J. 1998. Sampling Technique for Cheese Analysis by FTIR Spectroscopy. Food Sci., 63(1): 96-99.
11. Collins, Y. F., McSweeney, P. L. H. and Wilkinson, M. G. 2003. Lipolysis and Free Fatty Acid Catabolism in Cheese: A Review of Current Knowledge. Int. Dairy J., 13: 841–866.
12. de Angelis Curtis, S., Curini, R., D’Ascenzo, F., Sagone, F., Fachin, S. and Bocca, A. 1999. Use of Thermo-analytical Techniques to Study the Ripening of Grana Padano Cheese. Food Chem., 66(3): 375 –380.
13. Driessen, F. M. 1989. Heat-induced Changes in milk. Inactivation of Lipases and Proteinases (Indigenous and Bacterial). Bulletin. Int. Dairy. Fed., 238: 71-90.
14. Duggan, E., Noronha, N., O’Riordan, E. D. and O’Sullivan, M. 2008. Effect of Resistant Starch on the Water Binding Properties of Imitation Cheese. Food Eng., 84: 108–115.
15. Everett, D. W. and Auty, M. A. E. 2008. Cheese Structure and Current Methods of Analysis. Int. Dairy J., 18: 759–773.
16. Ferit Atasoy, A. and Turkoglu, H. 2009. Lipolysis in Urfa Cheese Produced from Raw and Pasteurized Goats’ and Cows’ Milk with Mesophilic or Thermophilic Cultures during Ripening. Food Chem., 115: 71–78.
17. Fitzpatrick, J. J. and Ahrné, L. 2005. Food Powder Handling and Processing: Industry Problems, Knowledge Barriers and Research Opportunities. Chem. Eng. Pro., 44: 209–214.
18. Fox, P. F., Law, J., McSweeney, P. L. H. and Wallace, J. 1993. Biochemistry of Cheese Ripening. In: " Cheese: Chemistry, Physics and Microbiology", (Ed): Fox, P. F.. 2th Edition, Chapman and Hall, London, 1: 389-439.
19. Franco, I., Prieto, B., Bernardo, A., Gonzalez Prieto, J. and Carballo, J. 2003. Biochemical Changes throughout the Ripening of a Traditional Spanish Goat Cheese Variety (Babia-Laciana). Int. Dairy J., 13: 221–230.
20. Georgal, A., Moschopoulou, E., Aktypis, A., Massouras, T., Zoidou, E., Kandarakis, I. and Anifantakis, E. 2005. Evolution of Lipolysis during the Ripening of Traditional Feta Cheese. Food Chem., 93: 73–80.
21. Geurts, T. J., Lettink, F. J. and Wouters, J. T. M. 2003. Lipase in Milk, Curd and Cheese. Milchwissenschaft., 58: 61–65.
22. Gillies, B., Yamazaki, H. and Armstrong, D. W. 1987. Natural Flavor Esters: Production by Candida cylindracea Lipase Adsorbed to Silica Gel. In: " Biocatalysis in Organic Media", (Eds.): Laane, C., Tramper , J. and Lilly, M. D.. Elsevier, Amsterdam, 227 PP.
23. Guisan, J. M. 2006. Immobilization of Enzymes and Cells. 2th Edition, Humana Press. Inc, PP. 65-76.
24. Haas, J. and Spillmann, H. 2001. Ammoniak in der Raumluft von Ka¨ Sekellern: Eine Erbeithygienische Abkla¨ rung. Millchwissenschaft., 56: 672–675.
25. Hagrass, A. E. A., El-Ghandour, M. H., Hammad, Y. A. and Hofi, A. A. 1983. Production of Ras Cheese from Recombined Milk. III. Effect of Some Ripening Agents. Egyptian J. Dairy Sci., 11: 271–279.
26. Hesari. J., Ehsani, M. R., Khosroshahi, A. and McSweeney, P. L. H. 2006. Contribution of Rennet and Starter to Proteolysis in Iranian UF White Cheese. LeLait., 86: 291–302.
27. Hickey, D. K., Guinee, T. P., Hou, J. and Wilkinson, M. G. 2013. Effects of Variation in Cheese Composition and Maturation on Water Activity in Cheddar Cheese during Ripening. Int. Dairy J., 30: 53-58.
28. IDF. 1982. Determination of the Total Solids Content. Cheese and Processed Cheese: IDF Standard 4a. Int. Dairy Federation, Brussels, Belgium.
29. Karami, M., Ehsani, M., Mousavi, M. E., Rezaei, K. and Safari, M. 2009. Microstructural Properties of Fat during the Accelerated Ripening of Ultrafiltered Feta Cheese. Food Chem., 113: 424–434.
30. Karami, M., Ehsani, M., Mousavi, M. E., Rezaei, K. and Safari, M. 2008. Microstructural Changes of Fat during the Ripening of Iranian Ultrafiltered Feta Cheese. J. Dairy Sci., 91(11): 4147-4154.
31. Kneifel, W. and Seiler , A. 1993. Water-holding Properties of Milk Protein Products: A Review. Food Structure, 12: 297–308.
32. Lemay, A., Paquin, P. and Lacroix, C. 1994. Influence of Microfluidization of Milk on Cheddar Cheese Composition, Color, Texture, and Yield. J. Dairy Sci., 77: 2870–2879.
33. Madkor, S., Fox, P. F., Shalabi, S. I. and Metwalli, N. H . 1986. Studies on the Ripening of Stilton Cheese. Food Chem., 25: 93-109.
34. Mangia, N. P., Murgia, M. A., Garau, G. and Deiana, P. 2011. Microbiological and Physicochemical Properties of Pecorino Romano Cheese Produced Using a Selected Starter Culture. J. Agr. Sci. Tech., 13: 585-600.
35. Mallatoua. H. and Pappaa, E. 2003. Changes in Free Fatty Acids during Ripening of Teleme Cheese Made with Ewes’, Goats’, Cows’ or a Mixture of Ewes’ and Goats’ Milk. Theophilos Massouras. Int. Dairy J., 13: 211–219.
36. Marcos, A., Esteban, M. A., Alcala, M. and Millan, R. 1983. Prediction of Water Activity of San Simon Cheese. J. Dairy Sci., 66: 909-911.
37. Marshal, R. T. 1992. Standard Methods for the Examination of Dairy Products. 16th Edition, American Public Health Association. Washington. D. C, PP. 271-272.
38. McMahon, D. J, Fife, R. L. and Oberg, C. J. 1999. Water partitioning in Mozzarella cheese and its relationship to cheese meltability. J. Dairy Sci., 82(7): 1361–1369.
39. Michalski, M. C., Michel, F., Sainmont, D. and Briard, V. 2001. Apparent ζ-potential as a Tool to Assess Mechanical Damages to the Milk fat Globule Membrane. Colloids Surf. B. Biointerf., 23: 23–30.
40. Moro Garcia, R., Alvarez Bartolome, M. L. and Espina Alvarez, A. 1993. Thermogravimetry (TG) Applied to the Analysis of Cabrales Cheese. Thermochimica Acta, 215: 281–289.
41. Oliveira, N. M. and Dourado, F. Q. 2011. Effect of Guar Gum on the Physicochemical, Thermal, Rheological and Textural Properties of Green Edam Cheese. Food Biopro. Technol., 4: 1414–1421.
42. Omar, M. M., E1-Zayatt, A. I. and Ashour, M. 1986. Flavor Enhancement, by Lipase Addition, of Ras Cheese Made from Reconstituted Milk. Food Chem., 19: 277-286.
43. Pastorino, A. J., Hansen, C. L. and McMahon, D. J. 2003. Effect of pH on the Chemical Composition and Structure-function Relationships of Cheddar Cheese. J. Dairy Sci., 86: 2751–2760.
44. Pavia, M., Trujillo, A.J., Sendra, E., Guamis, B. and Ferragut ,V. 2000. Free Faty Acid Content of Manchego-type Cheese Salted by Brine Vacuum Impregnation. Int. Dairy J., 10: 563–568.
45. Peters, K. H. and Knoop, A. M. 1974. Camembert-Herstellung aus Rockenmilch. Milchwissenschajt., 29: 193 -201.
46. Peters, K. H. and Knoop, A. M. 1975. Zur Herstellung von Camembert-k~ise aus Trockenmilch-Frischmilch-Gemischen. Milchwissenschaft., 30: 2059.
47. Rasouli Pirouzian, H., Hesari , J., Farajnia, S ., Moghaddam, M . and Ghiassifar, Sh. 2012. Effects of Enterococcus faecalis and Enterococcus faecium, Isolated from Traditional Lighvan Cheese, on Physicochemical and Sensory Characteristics of Iranian UF White Cheese. J. Agr. Sci. Tech., 14: 1023-1034.
48. Reetz, M. T., Tielmann, P., Wiesenhöfer, W., Könen, W. and Zonta, A. 2003. Second Generation Sol-Gel Encapsulated Lipases: Robust Heterogeneous Biocatalysts. Adv. Synth. Catal., 345: 717–728.
49. Pezeshki, A., Hesari, J., Ahmadi Zonoz, A. and Ghambarzadeh, B. 2011. Influence of Withania coagulans Protease as a Vegetable Rennet on Proteolysis of Iranian UF White Cheese. J. Agr. Sci. Tech., 13: 567-576.
50. Saldo, J., Sendra, E. and Guamis, B. 2002. Changes in Water Binding in High-Pressure Treated Cheese, Measured by TGA (Thermogravimetrical Analysis). Innovat. Food Sci. Emerg. Technol., 3: 203–207.
51. Saurel, R., Pajonk, A. and Andrieu, J. 2004. Modelling of French Emmental Cheese Water Activity during Salting and Ripening Periods. Food Eng., 63: 163-170.
52. Soares Cleide, M. F., dos Santtos On´elia, A., de Castro Heizir, F., de Moraes Flavio, F. and Zanin Gisella, M. 2006. Characterization of Sol–Gel Encapsulated Lipase Using Tetraethoxysilane as Precursor. Mol. Catal. B: Enzym., 39: 69–76.
53. Yilmaz, G., Ayar, A. and Akin, N. 2005. The Effect of Microbial Lipase on the Lipolysis during the Ripening of Tulum Cheese. Food Eng., 69: 269–274.
54. Zamora, A., Ferragut, V., Juan, B., Guamis, B. and Trujillo, A. J. 2011. Effect of Ultra-high Pressure Homogenisation of Milk on the Texture and Water-typology of a Starter-free Fresh Cheese. Innovat. Food Sci. Emerg. Technol., 12: 484–490.