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VOL. 76 (4), 493-515, 2010  LA ENERGÍA DE ACTIVACIÓN COMO MARCADOR…

11. BIBLIOGRAFÍA

 1. Arrhenius, S. (1974) Uber die reactionsgeschwindigkeit bei der inversion von
        rohrzucker durch säuren. Z. Phys. Chem. 27: 913-15.

 2. Hagelauer, U. & Faust, U. (1982) The catalytic activity and activation energy of
        creatine kinase isoenzymes. J. Clin. Chem. Clin. Biochem. 20: 633-38.

 3. Low, P. S., Bada, J. L. & Somero, G. N. (1973) Temperature adaptation of enzy-
        mes: roles of the free energy, the enthalphy, and entropy of activation. Proc. Nat.
        Acad. 70: 430-32.

 4. Cornish-Bowden, A. (2002) Enthalpy-entropy compensation: a phantom pheno-
        mena. J. Biosci. 27: 121-26.

 5. Hagelauer, U., Faust, U., Trendelenburg, C., Kruse-Jarres, J., Rudolph, T. & Both,
        A. (1983) Determination of activation energy of creatine kinase isoenzymes. J.
        Clin. Chem. Clin. Biochem. 21: 874-76.

 6. Wevers, R. A., Hagelauer, U., Stein, W. et al. (1985) Indices for the age of the
        creatine kinase M-chain in the blood. Clin. Chim. Acta. 148: 197-210.

 7. Delanghe, J. R., De Mol, A. M., De Buyzere, M. L., De Scheerder, I. K. & Wie-
        me, R. J. (1990) Mass concentration and activity concentration of creatine ki-
        nase isoenzyme MB compared in serum after acute myocardial infarction. Clin.
        Chem. 36: 149-53.

 8. Langlois, M. R., Delanghe, J. R., De Buyzere, M. L. & Leroux-Roels, G. G. (1992)
        Glycation of human tissue and serum creatine kinase. Clin. Chim. Acta. 211: 83-92.

 9. Remaley, A. T. & Wilding, P. (1989) Macroenzymes: biochemical characteriza-
        tion, clinical significance, and laboratory detection. Clin. Chem. 35: 2261-70.

10. Turecky, L. (2004) Macroenzymes and their clinical significance. Bratisl. Lek.
        Listy. 105: 260-63.

11. Fahie-Wilson, M. N., Burrows, S., Lawson, G. J., Gordon, T., Wong, W. & Das-
        gupta, B. (2007) Prevalence of increased serum creatine kinase activity due to
        macro-creatine kinase and experience of screening programmes in district ge-
        neral hospitals. Ann. Clin. Biochem. 44: 377-83.

12. Stein, W., Bohner, J., Steinhart, R. & Eggstein, M. (1982) Macro creatine kina-
        se: determination and determination of two types by their activation energies.
        Clin. Chem.26: 19-24.

13. Hafkenscheid, J. C. M. & Hessels, M. (1988) Some thermodynamic parameters
        and temperature-conversion factors for determining a-amylase concentration
        in serum. Clin. Chem. 34: 2016-18.

14. Hafkenscheid, J. C. M. & Hessels, M. (1989) Some thermodynamic parameters
        of pancreatic and salivary a-amylase in serum. J. Clin. Chem. Clin. Biochem. 27:
        173-74.

15. Buhl, S. N., Jackson, K. Y., Lubinski, R. & Vanderlinde, R. E. (1977) Optimal
        conditions for assaying human lactate dehydrogenase by the lactate-to-pyruva-
        te: Arrhenius relationships for lactate dehydrogenase isoenzymes 1 and 5. Clin.
        Chem. 23: 1289-1295.

16. Rej, R. & Vanderlinde, R. E. (1981) Effects of temperature on the steady-state ki-
        netics and measurement of aspartate aminotransferases. Clin. Chem. 27: 213-19.

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