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Một phần của tài liệu nội chuyển hóa ester bằng enzyme (Trang 65)

1. Đặng Thị Thu, Lê Ngọc Tú, Tô Kim Anh, Phạm Thu Thủy, Nguyễn Xuân Sâm, Công nghệ enzyme, NXB KHKT, Hà Nội, 2003, 304.

2. Nguyễn Đức Lượng (Chủ biên), Công nghệ enzyme, NXB Đại học Quốc gia TPHCM, 2004, 534.

3. Abigor R., Marmer W., Folia T., Jones K., DiCiccio R., A.R., U.P., Production of cocoa butter-like fats by the lipase-catalyzed interesterification of palm oil and hydrogenated soybean oil, JAOCS, 80, 2003, 1193.

4. Abraham G., M.A. Murray, V.T. John, Interesterification selectivity in lipase catalyzed reactions of low molecular weight triglycerides, Biotechnol. Lett., 10(8), 1998, 555 – 558.

5. Akoh C.C., B.H. Jennings, D.A. Lillard, Enzymatic modification of trilinolein: Incorporation of n-3 polyunsaturated fatty acid, J. American Oil Chemist’s Society, 71, 1995, 1317 – 1321.

6. Baba T., Downs D., Jackson K.W., Tang J., Wang C.S., Structure of human milk activated lipase, Biochemistry, 30:500, 1991.

7. Bloomer S., P. Adlercreutz, B. Mattiasson, Triglyceride interesterification by lipases 2. Reaction parameters for the reduction of trisaturated impurities and diglycerides in batch reaction, Biocatalysis, 5, 1991, 145 – 162.

8. Bornaz S., J. Fanni, M. Parmentier, Limit of the solid fat content modifiation of butter,

J. Am. Oil Chem. Soc., 71(12), 1994, 1373 – 1380.

9. Briand D., E. Dubreucq, P. Galzy, Enzymatic fatty esters synthesis in aqueous medium with lipase from Candida parapsilosis (Ashford) Langeron và Talice, Biotechnol. Lett., 16, 1994, 813 -818.

10. Buchholz K., Kasche V., Bornscheuer U.T., Biocatalysts and Enzyme Technology, Wiley VCH, Weinheim, 2005.

11. Chang M.K., G. Abraham, V.T. John, Production of cocoa butter-like fat from interesterification of vegetable oils, J. Am. Oil Chem. Soc., 67, 1990, 832 – 834.

Nội chuyển hóa ester bằng enzyme Tài liệu tham khảo

12. Chong C.N., Y.M. Hoh, C.W. Wang, Fractionation procedures for obtaining cocoa butter-like fat from enzymatically interesterified palm olein, J. Am. Oil Chem. Soc., 67, 1990, 137 – 140.

13. Clark S.B., Laboda H.L., Triolein-phosphatidylcholine cholesterol emulsions as substrates for lipoprotein and hepatic lipases, Lipids, 26:28, 1991.

14. Daniels R.L., H.J. Kim, D.B. Min, Hydrogenation and Interesterification Effects on the Oxidative Stability and Melting Point of Soybean Oil, J. Agric. Food Chem., 54, 2006, 6011 – 6015.

15. Desnuelle P., The lipase, The enzymes, Vol.7, 3rd ed., Academic Press, New York, 1972. 16. Dogan I.S., I. Javidipour, T. Akan, Effects of interesterified palm and cottonseed oil

blends on cake quality, International J. Food Science and Technol., 42, 2007, 157 – 164.

17. Dugi K.A., Dechek H.L., Tally G.D., Brewer H.B., Santamaria-Fojo S., Human lipoprotein lipase: The loop covering the catalytic site is essential for interaction with substrates, J. Biol. Chem., 267:25086, 1992.

18. Enfors, S.O., Control of proteolysis in fermentation of recombinant proteins, Trends Biotechnol., 10, 1992, 310 – 315.

19. Forssell P., K. Poutanen, Continuous enzymatic transesterification of rapeseed oil and lauric acid in a solvent-free system, Biocatalysis in Non-Conventional Media, Elsevier Science Publishers, Amsterdam, 1992, 491 – 495.

20. Garcia H., K. Keough, J. Arcos, C. Hill, Interesterification (Acidolysis) of Butterfat with Conjugated Linoleic Acid in Batch Reactor, J. Dairy Sci., 83, 2000, 371 – 377.

21. Garcia H., Keough K., Arcos J., Hill C., Continuous interesterification of butteroil and conjugated linoleic acid in a tubular reactor packed with an immobilized lipase, Biotechnology Techniques, 13, 1999, 369 – 373.

22. Gunstone F.D., Introduction: Modifying Lipids – Why and How?, Modifying Lipids for Use in Food, CRC Press LLC, USA, 2006.

23. Hakoda M., S.N., Enomoto A., N.K., Effect of moisture on enzymatic reaction in supercritical carbon dioxide, Bioprocess Biosyst Eng, 24, 2002, 355 – 362.

Nội chuyển hóa ester bằng enzyme Tài liệu tham khảo

24. Haraldsson G., B. Kristinsson, Seperation of eicosapentaenoic acid and docosahexaenoic acid in fish oil by kinetic resolution using lipase, J. Am. Oil Chem. Soc., 76, 1998, 1551 – 1556.

25. Henge, R., Bukau, B., Proteolysis in prokaryotes: protein quality control and regulatory principles, Mol. Microbiol., 49, 2003, 1541 – 1462.

26. Hjorth A., Carriere E., Cudrey C., A structural domain (the lid) found in pancreatic lipases is absent in the guinea pig (phospholipase) lipase, Biochemistry, 32, 1993. 27. Ison A.P., A. Macrae, C. Smith, J. Bosley, Mass Transfer Effects in Solvent-Free Fat

Interesterification Reactions: Influences on Catalyst Design, Biotechnology and Bioengineering, Vol. 43, 1994, 122 – 130.

28. Iwai M., Y. Tsujisaka, The purification and properties of three kinds of lipases from (adsbygoogle = window.adsbygoogle || []).push({});

Rhizopus delemar, Agric. Biol. Chem., 38, 1974, 241 – 247.

29. Jackson M., King J., List G., Neff W, Lipase-Catalyzed Randomization of Fats and Oils in Flowing Supercritical Carbon Dioxide, JAOCS, 74, 1997, 635.

30. Jones, H.E., Holland, I.B., Campbell, A.K., Direct measurement of free Ca2+ shows different regulation of Ca2+ between the periplasm and the cytosol of Escherichia coli,

Cell Calcium, 32, 2002, 183 – 192.

31. Kavanagh A.R., A breakthrough in infant formula fats, Oleagineux Corps Gras Lipides, 4, 1997, 165 -168.

32. Kennedy J.P., Structured lipids: Fats of the future, Food Technol., 45, 1991, 76 – 83. 33. Lee D.H., Park C.H., Yeo J., Kim S., Lipase immobilization on Silica gel using a cross-

linking method, J. Ind. Eng. Chem., 12, 2006, 777- 782.

34. Lee J.H., Jones K.C., Lee K.T., Kim M.R., Foglia T.A., High-performance liquid chromatographic separation of Structured lipids produced by interesterification of Macadamia oil with Tributyrin and Tricaprylin, Chromatographia, 58, 2003, 653–658. 35. Lee Ki-Teak, Akoh C., Immobilization of lipase on clay, Celite 545, diethylaminoethyl-,

and carboxymethyl-Sephadex and their interesterification activity, Biotechnol Techniques, 12, 1998, 381 – 384.

Nội chuyển hóa ester bằng enzyme Tài liệu tham khảo

36. Malcata F.X., H.R. Reyes, H.S. Garcia, C.G. Hill Jr., C.H. Amundson, Kinetics and mechanisms catalyzed by immobilized lipase, Enzyme Microb. Technol., 14, 1992, 426 – 446.

37. Maruyama T., M. Nakajima, S. Ichikawa, H. Nabetani, S. Furusaki, M. Seki, Oil – Water Interfacial Activation of Lipase for Interesterification of Triglyceride and Fatty Acid, J. American Oil Chemist’s Society, Vol. 77, no. 11, 2000, 1121 – 1126.

38. Mcneill G.P., D. Borowitz, R.G. Berger, Selective distribution of saturated fatty acids into the monoglyceride fraction during enzymatic glycerolysis, J. Am. Oil Chem. Soc., 69, 1992, 1098 – 1103.

39. Mcneill G.P., S. Shimizu, T. Yamane, High-yield glycerolysis of fats and oils, J. American Oil Chemist’s Society, 68, 1991, 1 – 5.

40. Miller A.D., Blanch H., Prausnitz J., Enzyme-Catalyzed Interesterification of Triglycerides in Supercritical Carbon Dioxide, Ind. Eng. Chem. Res, 30, 1991, 939. 41. Miller C., Austin H., Porsorske L., Gonziez J., Characteristics of an immobilized lipase

for the commercial synthesis of esters, J. Am. Oil Chem. Soc., 65(6), 1988, 927 – 935. 42. Mitraki, A., Fane, B., Haase-Petigell, C., Sturtevant, J., King, J., Global suppression of

protein folding defects and inclusion body formation, Science, 290, 1991, 54 – 58. 43. Monero PA, Medina A., Rubio F., P.B., C.L., G. E., Production of structured

triacylglycerols in an immobilized lipase packed-bed reactor: batch mode operation, J. Chemical Technol. and Biotechnol., 80, 2005, 35 – 43.

44. Mu H., P. Kalo, X. Xu, Carl-Erik Hoy, Chromatographic methods in the monitoring of lipase-catalyzed interesterification, Eur. J. Lipid Sci. Technol., 2000, 202 – 211. 45. Mukherjee K.D., Mills M.J., Lipases from plants, Lipases, Cambridge University Press,

Cambridge, 1994, 49.

46. Mustranta A., Forssell P., Poutanen K., Applications of immobilized lipases to transesterification and esterification reactions in non-aqueous systems, Enzyme Microb. Technol., 15, 1993, 133 – 139.

47. Nascimento A.C., C. Tecelao, J. Gusmao, M. Fonseca, S. Dias, Modelling lipase-catalysed transesterification of containing n-3 fatty acids monitored by their solid fat content,

Nội chuyển hóa ester bằng enzyme Tài liệu tham khảo

48. Oba T., B. Witholt, Interesterification of milk fat with oleic acid catalyzed by immobilized Rhizopus arrhizus lipase, J. Dairy Sci., 77, 1994, 1797 – 1797.

49. Osorio N., Manuela M., Ferreira-Dias S., Operational stability of Thermomyces lanuginosa lipase during interesterification of fat in continuous packed-bed reactors,

Eur. J. Lipid Sci. Technol., 108, 2006, 543 – 553.

50. Pabai F., Kermasha S., Morin A., Interesterification of butter fat by partially purified extracellular lipases from Pseudomonas putida, Aspergillus niger and Rhizopus oryzae, World J. Microbiol. Biotechnol., 11, 1995, 669 – 677.

51. Pabai F., S. Kermasha, A. Morin, Lipase from Pseudomonas fragi CRDA 323: Partial purification, characterization and interesterification of butter fat, Appl Microbiol Biotechnol, 43, 1995, 42 – 51.

52. Pederson S., M.W. Christensen, Immobilized biocatalyst, Straathof A and Adlercreutz P,

Applied Biocatalysis, 2ndedn, New York, Harwood Academic, 2000, 213 – 228. (adsbygoogle = window.adsbygoogle || []).push({});

53. Ramamurthi S., A.R. McCurdy, Interesterification – Current Status and Future Prospects, Development and Processing of Vegetable Oils for Human Nutrition, AOCS Press, USA, 1995.

54. Reyes H., Hill Charles G., Kinetic modeling of interesterification reactions catalyzed by immobilized lipase, Biotechnol Bioeng, 43, 1994, 171 – 182.

55. Rousseau D., A.G. Marangoni, Chemical interesterification of food lipids: Theory and Practice, Food Lipids: Chemistry, Nutrition and Biotechnology, Marcel Dekker, Inc, USA, 2002.

56. Rousseau D., K. Forestière, A.R. Hill, A.G. Marangoni, Restructuring butterfat through blending and chemical interesterification: 1. Melting behavior and triacylglycerol modifications, J. Am. Oil Chem. Soc., 72, 1996, 973.

57. Scherer, L.J., Rossi, J.J., Approaches for the sequence-specific knockdown of mRNA,

Nature Biotechnol., 21, 2003, 1457 – 1465.

58. Shimada Y., A. Sugihara, H. Kuramoto, T. Nagao, M. Gemba, Y. Tominaga, Purification of docosahexaenoic acid by selective esterification of fatty acid from tuna oil with

Nội chuyển hóa ester bằng enzyme Tài liệu tham khảo

59. Soumanou M., U.T. Bornscheuer, R.D. Schmid, Synthesis of structured triglycerides by lipase catalysis, Fett/Lipid, 100(4-5), 1998, 156 – 160.

60. Sreenivasan B., Interesterification of fats, J. Am. Oil Chem. Soc., 55, 1978, 796.

61. Sridhar R., G. Lakshminarayana, T. Kaimal, Modification of Selected Edible Vegetable Oils to High Oleic Oils by Lipase-Catalyzed Ester Interchange, J. Agric. Food Chem., 39, 1991, 2069 – 2071.

62. Svesson I., E. Wehtje, P. Adlercreutz, B. Mattiasson, Effects of water activity on reaction rates and equilibrium positions in enzymatic esterification, Biotechnol. Bioeng., 44, 1994, 549 – 556.

63. Torres C., Munir F., Blanco R., Otero C., Hill C., Catalyitc transesterification of corn oil and tristearin using immobilized lipase from Thermomyces lanuginosa, JAOCS, 79, 2002, 775.

64. Trevan M.D., Immobilized Enzymes, John Wiley & Sons, New York, 1980, 16 – 26. 65. Ujang Z., Vaidya A., Stepped water activity control for efficient enzymatic

interesterification, Appl Microbiol Biotechnol, 50, 1998, 318 – 322.

66. Weete J.D., Microbial Lipases, Food Lipids: Chemistry, Nutrition and Biotechnology, Marcel Dekker, Inc, USA, 2002.

67. Wickner, S., Maurizi, M.R., Gottesman, S., Posttranslational quality control: folding, refolding, and degrading proteins, Science, 286, 1999, 1888 – 1893.

68. Willis W.M., A.G. Marangoni, Enzymatic Interesterification, Food Lipids: Chemistry, Nutrition and Biotechnology, Marcel Dekker, Inc, USA, 2002.

69. Wong D.W.S., Food Enzymes: Structure and Mechanism, Chapman & Hall, New York, 1995, 37 – 84.

70. Wong D.W.S., Lipase, Handbook of Food Enzymology, Marcel Dekker, Inc, USA, 2003. 71. Xu X., Balchen S., Jonsson G., A. J., Production of structured lipids by lipase-catalyzed

interesterification in flat membrane reactor, JAOCS, 77, 2000, 1035.

72. Xu X., H. Mu, C-E Hoy, J. Adler-Nissen, Production of specific structured lipids by enzymatic interesterification in a pilot enzyme bed reactor: process optimisation by response surface methodology, Fett/Lipid, 101(6), 1999, 203 – 214.

Nội chuyển hóa ester bằng enzyme Tài liệu tham khảo

73. Xu X., P.L., R. T., Triglycerides selectivity of immobilized Thermomyces lanuginosa

lipase in interesterification, JAOCS, 82, 2005, 737.

74. Xu X., Porsgaard T., Zhang H., A.J., H. C, Production of Structured Lipids in Packed-Bed Reactor with Thermomyces lanuginosa Lipase, JAOCS, 79, 2002, 561.

75. Xu X., Production of specific-structured triacylglycerols by lipase-catalyzed reaction: a review, Eur. J. Lipid Sci. Technol, 2000, 287 – 303.

76. Xu X., S. Balchen, C-E Hoy, J. Adler-Nissen, Pilot batch prduction of specific-structure lipids by lipase-catalyzed interesterification: preliminary study on incorporation and acyl migration, J. Am. Oil Chem. Soc., 75, 1998, 301 – 308.

77. Xu X., Skands A., Jonsson G., A. J., Production of structured lipids by lipase-catalyzed interesterification in an ultrafiltration membrane reactor, Biotechnology Letters, 22, 2000, 1667 – 1671.

78. Xu X., Z. Guo, H. Zhang, F. Vikbjerg, M.L. Damstrup, Chemical and enzymatic interesterification of lipids for use in food, Modifying Lipids for Use in Food, CRC Press LLC, USA, 2006. (adsbygoogle = window.adsbygoogle || []).push({});

79. Yamane T., Enzyme technology for the lipids industry: An engineering overview, J. Am. Oil Chem. Soc., 4(12), 1987, 1657 – 1662.

80. Yamane T., T. Suzuki, T. Hoshino, Increasing n-3 polyunsaturated fatty acid content of fish oil by temperature control of lipase –catalyzed acidolysis, J. American Oil Chemist’s Society, 70, 1993, 1285 – 1287.

81. Yang T., Fruekilde M., Xu X., Applications of immobilized Thermomyces lanuginosa

lipase in interesterification, JAOCS, 80, 2003, 881.

82. Yilmaz Emin, Bio-imprinting of microbial lipase at air-water interface, World J. Microbiol Biotechnol, 18, 2002, 141 – 145.

83. Yilmaz Emin, Combining the bioimprinting technique with lipase immobilized for interesterification, World J. Microbiol Biotechnol, 18, 2002, 621 – 625.

84. Yilmaz Emin, Orlistat-induced molecular bio-imprinting of microbial lipase, World J. Microbiol Biotechnol, 19, 2003, 161 – 165.

Nội chuyển hóa ester bằng enzyme Tài liệu tham khảo

85. Yokozeki K., Yamanaka S., T.K., H.Y., T.A., S.K., F.S., Application of immobilized lipase to regio-specific interesterification of triglyceride in organic solvent, Eur J Appl Microbiol Biotechnol, 14, 1982, 1 – 5.

86. Zaborsky O.R., Immobilized Enzymes, CRC Press, Boca Raton, FL, 1973.

87. Zhang H., L.S. Pedersen, D. Kristensen, J. Adler-Nissen, H.C. Holm, Modification of margarine fats by enzymatic interesterification: evaluation of a solid-fat-content- based exponential model with two groups of oil blends, J. Am. Oil Chem. Soc., 81(7), 2004, 653 – 658.

88. Zhang H., Mu H., Xu X., Monitoring lipase-catalyzed butterfat interesterification with rapeseed oil by Fourier transform near-infrared spectroscopy, Anal Bioanal Chem, 386, 2006, 1889 – 1897.

89. Zhang H., P. Smith, J.A. Nissen, Effects of degree of enzymatic interesterification on the physical properties of margarine fats: Solid fat content, crystallization behavior, crystal morphology, and crystal network, J. Agricultural and Food Chemistry, 52, 2004, 4423 – 4431.

90. Zhang H., Pedersen L., Kristensen D., Adler-Nissenn J., H.H., Modification of Margarine fats by enzymatic interesterification: Evaluation of a solid-fat-content-based exponential model with two group of oil blends, JAOCS, 81, 2004, 653.

Một phần của tài liệu nội chuyển hóa ester bằng enzyme (Trang 65)