Page 123 - 72_03
P. 123

VOL. 72 (3), 443-461, 2006  BIOSENSOR AMPEROMÉTRICO PARA LA MEDIDA...

(16)  SHARMA, S. K.; SINGHAL, R.; MALHOTRA, B. D.; SEHGAL, N., KUMAR, A. (2004):
(17)  Langmuir-Blodgett film based biosensor for estimation of galactose in milk.
(18)  Electrochim. Acta. 49: 2479-2485.
(19)  EKINCI, E., PAÕAHAN, A. (2004): Poly (4-methoxyphenol) film as a galactose-
(20)  sensing material. Eur. Pol. J. 40: 1605-1608.
      YANG, Y.; MU, S., CHEN, H. (1998): Electrochemical synthesis of polypyrrole
(21)  for the immobilization of galactose oxidase. Synth. Metals. 92: 173-178.
(22)  BRAHIM, S.; NARINESINGH, D., GUISEPPI-ELI, A. (2002): Bio-smart hydrogels: co-
(23)  joined molecular recognition and signal transduction in biosensor fabrica-
(24)  tion and drug delivery. Biosens. Bioelectron. 17: 53-59.
(25)  RUBIO, RETAMA, B. J.; LÓPEZ-CABARCOS, E. J., LÓPEZ-RUIZ, B. (2003): Microstruc-
(26)  tural modifications induced by the entrapped glucose oxidase in cross-linked
(27)  polyacrylamide microgels used as glucose sensors. Biomaterials. 24: 2965-
      2973.
(28)  IWUOHA, E. I.; ADEYOJU, O.; DEMPSEY, E., SMUTH, M. R. (1995): Investigation of
(29)  the effects of polar organic solvents on the activity of tyrosinase entrapped
(30)  in a poly(ester-sulphonic acid) polymer. Biosens. Bioelectron. 10: 661-667.
(31)  DIXON, M., WEBB, E. C. (1979): Enzymes. 3rd edition, p. 92-93. Academic
      Press. New York.
      GONZÁLEZ-SÁIZ, J. M.; FERNÁNDEZ-TORROBA, M. A., PIZARRO, C. (1999): Study by
      response surface methodology of the swelling kinetic of weakly basic polya-
      crylamide gels in water. Eur. Pol. J. 35: 509-516.
      DIMARZIO, E. A. (1964): Nature of the glass transition and the glassy state. J.
      Res. Natl. Bur. Stds. 68A: 611.
      GLANS, J. H., TURNER, D. T. (1981): Glass transition elevation of polystyrene
      by crosslinks. Polymer. 22: 1540-1543.
      SZABÓ, E. E.; ADÁNYI, N.; VÁRADI, M. (1996): Application of biosensor for mo-
      nitoring galactose content. Biosens. Bioelectron. 11: 1051-1058.
      TRÁ…, J.; NAVRÁTIL, M.; ŠTURDÍK, E., GEMEINER, P. (2001): Monitoring of di-
      hydroxyacetone production during oxidation of glycerol by immobilized Glu-
      conobacter oxydans cells with an enzyme biosensor. Enz. and Microb. Tech.
      28: 383-388.
      TRESSEL, P. S., KOSMAN, D. J. (1982): Galactose oxidase from Dactylium den-
      droides. Meth. Enzymol. 89: 163-171.
      RUBIO RETAMA, B. J.; LÓPEZ-RUIZ, B.; LÓPEZ-CABARCOS, E. J. (2005): High stabi-
      lity amperometric biosensor based on enzyme entrapment in microgels. Ta-
      lanta. 68: 99-107.
      HERVÁS PÉREZ, J. P.; SÁNCHEZ-PANIAGUA LÓPEZ, M.; LÓPEZ-CABARCOS, E.; LÓPEZ-
      RUIZ, B. (2006): Amperometric tyrosinase biosensor based on polyacrylamide
      microgels. Biosens. Bioelectron. 22: 429-439.
      COSNIER, S.; SZUNERITS, S.; MARKS, R. S.; NOVOA, A.; PUECH, L.; PÉREZ, E.; RICO-
      LATTES, I. (2001): A comparative physical study of two different hydrophilic
      synthetic latex matrices for the construction of a glucose biosensor. Talanta.

      55: 889-897.

                            461
   118   119   120   121   122   123   124   125   126   127   128