HomeThe Philippine Journal of Biochemistry and Molecular Biology (PJBMB)vol. 1 no. 1 (2021)

Current Trends in Enzyme Technology

Ernesto J. del Rosario

Discipline: Biological and Sport Sciences

 

Abstract:

In 65 years since Michaelis and Menten (1) postulated their classic mechanism of enzymatic reactions, much progress has taken place in the rapidlyexpanding area of Enzymology.



References:

  1. Michaelis, L. and Menten, M. L. Biochem Z. 49: 333 (1913).
  2. Skinner, K. J. Chem Eng. News Aug. 18, 1975, pp. 22-41.
  3. Wingard, L. B., Jr. Advances Biochem. Eng. 2: 1 (1972).
  4. Lilly, M. D. and Dunnill, P. in Methods in Enzymology Vol. XLIV Immobilized Enzymes. Academic Press, New York, pp. 717-738 (1976).
  5. Mosbach, K. Methods in Enzymology Vol. XLIV Immobilized Enzymes. Academic Press, New York (1976).
  6. Vieth, W. R. and Venkatasubramanian, K. CHEMTECH, Jan. 1974, p. 47 and succeeding articles in the series.
  7. Aschengreen, N. H. Process Biochem. May, 1975. pp. 17-19.
  8. Hamilton, B. K., Colton, C. K. and Cooney, C. L. in Immobilized Enzymes in Food and Microbial Processes (A. C. Olson and C. L. Cooney, editors) Plenum Press, New York. pp. 85-131 (1974).
  9. Chibata, I., Tosa, T., Sato T., Mori T. and Matsuo Y. Proc. IV IFS: Ferment. Technol. Today. pp. 383-389 (1972).
  10. Gaden, E. L., Jr., Mandels, M. H., Reese, E. T. and Spano, L. A. Enzymatic Conversion of Cellulosic Materials: Technology and Applications, Biotechnol. Bioeng. Symp. No. 6 (1976).
  11. Ghose, T. K., Bioconversion of Cellulosic Substances into Energy Chemicals and Microbial Protein, Proc. Bioconversion Symp. New Delhi, India, (1977).
  12. Das, K. and Ghose, T. K. J. Appl. Chem. Biotechnol. 1: 829 (1973).
  13. Wilke, C. R., Yang, R. D. and Von Stockar, U. Biotechnol. Bioeng. Symp. No. 6, 155 (1976).
  14. Pontiveros, C. R., Alcantara, J. A. and del Rosario, E. J. Philipp. J. Coconut Studies, accepted for publication (1978).
  15. Rao, G. R. J. Food Sci. Technol. 6: 21 (1969).
  16. Hagenmaier, R. D., Glissendorf, M. and Mattil, K. F. Philipp. J. Coconut Studies. 1: 37 (1976).
  17. Ortiz, P. F. and del Rosario, E. J., unpublished data (1978).
  18. Durst, R. A. Ion Selective Electrodes Special Publication 314 National Bureau of Standards, Washington, D. C. (1969).
  19. Gray, D. N., Keyes, M. H. and Watson, B. Anal. Chem. 49: 1067A (1977).
  20. Guilbault, G. G. in Methods in Enzymology Vol. XLIV Immobilized Enzymes, Academic Press, New York. pp. 579-618. (1976).
  21. Mahler, H. R. and Cordes, E. H. Biological Chemistry. Second Edition, Harper and Row Publishers, New York. p. 859. (1971).
  22. Johnson C. B., Whitington, W. J. and Blackwood, G. C. Nature. 262: 133 (1976).
  23. Dalling, M. J., Halloran, G. M. and Wilson, J. H. Aust. J. Agric. Res. 26: 1 (1975).
  24. Eilrich, G. L. and Hageman, R. H. Crop Sci. 13: 59 (1973).
  25. Deckard, E. L., Lambert, R. J. and Hageman, R. H. Crop Sci. 13: 343 (1973).
  26. Bergmeyer, H. U. and Bernt, E. in Methods of Enzymatic Analysis, Vol. 3 (H. U. Bergmeyer, editor) Verlag Chemie, Weinheim, U.S.A., p. 1205 (1974).
  27. Vessel, E. S. in Isozymes II. Physiological Function (C. L. Markert, editor), Academic Press, New York. pp. 1-28. (1975).
  28. Chang, T. M. S. in Methods in Enzymology Vol. XLIV Immobilized Enzymes, Academic Press, New York. pp. 676-698 (1976).
  29. Gregoriadis, G. in Methods in Enzymology Vol. XLIV Immobilized Enzymes, Academic Press, New York. pp. 698-709 (1976).