Development of a biparametric bioanalyser for creatinine and urea. Validation of the determination of biochemical parameters associated with hemodialysis

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M. Jurkiewicz, S. Alegret, J. Almirall, M. García and E. Fàbregas


Abstract

The construction and evaluation of an automated urea and creatinine biparametric biosystem using flow injection analysis (FIA) are described. The biosystem uses enzyme reactions that hydrolyse urea and creatinine producing ammonium ions. The enzymes used were creatinine deiminase and urease, which are immobilized covalently in flow reactors. The reactor with creatinine deiminase has the enzyme immobilized on controlled-pore glass beads, whereas urease is immobilized on a nylon open tubular reactor. Detection is realised with a flow-through ammonium ion-selective electrode with an inner solid-state contact (graphite–epoxy composite). Ammonium ions are separated from alkali ion interferents through a gas-diffusion cell. The bioanalyser is fully automated using software and electronics developed ex profeso in our laboratories. The analyser was validated off-line by measuring urea and creatinine from discrete effluent samples from hemodialysis equipment. Results agreed with concurrent analyses realised using hospital laboratory methods. There were no significant differences between the two sets of results at the 95% confidence level. Finally, the biparametric bioanalyser was validated on-line by measuring creatinine and urea levels in artificial kidney effluents. These measurements were useful in the determination of key biochemical parameters of clinical interest such as the mass of urea and creatinine extracted from the patient as well as the initial concentration of creatinine and urea in blood plasma. When the results of the bioanalyser were compared with those yielded by the usual methods, they showed no significant differences at the 95% confidence level when determining the mass of the analytes extracted by the hemodialyser or when determining the urea concentration in blood plasma. However, when measuring the creatinine concentration in blood plasma using the developed bioanalyser, significant differences appeared.


References

  1. A. González and F. González, in Bioquímica Clínica: Semiologia i Diagnòstic, ed. González, F., Barcanova, Barcelona. 1993, p. 191 Search PubMed.
  2. S. Anton, M. C. Gutiérrez, A. Gómez-Hens and D. Pérez-Bendito, Anal. Chim. Acta, 1990, 230, 145 CrossRef CAS.
  3. N. T. Lequang, G. Migueres, D. Roche, M. L. Pelladeau and F. Labrousse, Clin. Chem., 1987, 33, 192 CAS.
  4. D. Narinesingh, A. Pope and T. T. Ngo, Talanta, 1992, 39, 1233 CrossRef CAS.
  5. E. M. Gindler and O. Daskalakis, Clin. Chem., 1982, 28, 1570.
  6. M. Llobat-Estellés, A. Sevillano-Cabeza and P. Campins-Falcó, Analyst, 1989, 114, 597 RSC.
  7. S. Zygmunt, J. Clin. Chem. Clin. Biochem., 1981, 19, 886 Search PubMed.
  8. W. A. White and E. C. Attwood, Ann. Clin. Biochem., 1980, 17, 153 Search PubMed.
  9. T. Skai, H. Ohta, N. Ohno and J. Imai, Anal. Chim. Acta, 1995, 308, 446 CrossRef.
  10. P. Masson and P. Ohlsson, J. Clin. Chem. Clin. Biochem., 1981, 19, 765 Search PubMed.
  11. A. N. Araujo, J. L. F. C. Lima, B. F. Reis and E. A. G. Zagatto, Anal. Chim. Acta, 1995, 310, 447 CrossRef CAS.
  12. K. G. Blass, R. Thibert and L. K. Lam, J. Clin. Chem. Clin. Biochem., 1974, 12, 336 Search PubMed.
  13. M. H. Kroll, N. A. Roach, B. Poe and R. J. Elin, Clin. Chem., 1987, 33, 1129 CAS.
  14. N. Ferry, A. Caillette, J. Goudable, C. Denicola and N. Pozet, Nephrol. Dialysis Transplant., 1996, 11, 2282 Search PubMed.
  15. R. L. Czervionke, R. D. Feld and G. F. Johnson, Clin. Chem., 1985, 31, 1024.
  16. A. H. Cruickshank, F. C. Ballantyne and A. Shenkin, Ann. Clin. Biochem., 1988, 25, 112 Search PubMed.
  17. M. L. Llobat-Estelles, R. González-Pellicer, A. Mauria-Ucejo and M. C. Pascual-Martí, Anal. Lett., 1996, 29, 1351 CAS.
  18. D. Hardeman and E. T. Backer, Clin. Chem., 1991, 37, 2010 CAS.
  19. R. S. Hare, Proc. Soc. Exp. Biol. Med., 1950, 74, 148 Search PubMed.
  20. H. H. Taussky, Clin. Chim. Acta, 1956, 1, 210 CrossRef CAS.
  21. A. K. Chasson, H. J. Grady and M. A. Stanley, Am. J. Clin. Pathol., 1961, 35, 83 Search PubMed.
  22. P. Masson, P. Ohlsson and I. Björkhem, Clin. Chem., 1981, 27, 18 CAS.
  23. D. L. Fabiny, F. T. Fox and G. Ertingshausen, Clin. Chem., 1971, 17, 696 CAS.
  24. D. R. Flores, F. T. Fox and R. E. Stirling, Clin. Chem., 1972, 18, 698.
  25. J. A. Lustgarten and R. E. Wenk, Clin. Chem., 1972, 18, 1419 CAS.
  26. M. H. Kroll, L. Nealon, M. A. Vogel and R. J. Elin, Clin. Chem., 1985, 31, 306 CAS.
  27. C. S. Rui, H. Ogawa, K. Sonomoto and Y. Kato, Ann. N.Y. Acad. Sci., 1995, 750, 30 CAS.
  28. C. S. Rui, H. Ogawa, K. Sonomoto and Y. Kato, Biosci. Biotechnol. Biochem., 1993, 57, 191 CAS.
  29. C. S. Rui, K. Sonomoto and Y. Kato, Anal. Sci., 1992, 8, 845 CAS.
  30. M. Jurkiewicz, S. Solé, J. Almirall, M. García, S. Alegret and E. Martínez-Fàbregas, Analyst, 1996, 121, 959 RSC.
  31. P. E. Watson, I. D. Watson and R. D. Batt, Am. J. Clin. Nutr., 1980, 33, 27 Search PubMed.
  32. P. Keshaviah and R. A. Star, Seminars Dial., 1994, 7, 1 Search PubMed.
  33. M. Jurkiewicz, M. del-Valle, S. Alegret and E. Martínez-Fàbregas, Anal. Chim. Acta, 1996, 327, 243 CrossRef CAS.
  34. S. Tallón, G. Hernández, M. A. Álvarez-Lara, M. Espinosa, R. Pérez, A. Martín-Malo and P. Aljama, Nefrología, 1994, 14, 678 Search PubMed.
  35. M. Tranholm-Jeppesen and E. Harald-Hansen, Anal. Chim. Acta, 1988, 214, 147 CrossRef CAS.
  36. J. Almirall, M. Jurkiewicz, M. García, S. Solé, A. Liesa, J. Padilla, E. Yuste, S. Alegret and E. Martínez-Fàbregas, Nefrología, 1996, 16, 524 Search PubMed.
  37. M. Jurkiewicz, S. Alegret and E. Martínez-Fàbregas, Anal. Chim. Acta, in the press Search PubMed.
  38. H. H. Weetall and L. S. Hersch, Biochim. Biophys. Acta, 1969, 185, 464 CrossRef CAS.
  39. H. H. Weetall, Anal. Chem., 1974, 46, 602A CAS.
  40. G. Johansson and L. Ögren, Anal. Chim. Acta, 1976, 84, 23 CrossRef CAS.
  41. W. Hornby and D. L. Morris, in Immobilized Enzymes, Antigens, Antibodies and Peptides, ed. Weethall, H. H., Marcel Dekker, New York, 1975, p. 141 Search PubMed.
  42. S. Alegret, J. Alonso, J. Bartrolí and E. Martínez-Fàbregas, Analyst, 1989, 114, 1443 RSC.
  43. S. Alegret, J. Alonso, J. Bartrolí, J. M. Paulís, J. F. L. C. Lima and A. A. S. C. Machado, Anal. Chim. Acta, 1984, 164, 147 CrossRef CAS.
  44. J. Alonso, J. Bartrolí, J. F. L. C. Lima and A. A. S. C. Machado, Anal. Chim. Acta, 1986, 179, 503 CrossRef CAS.
  45. S. Alegret and E. Martínez-Fábregas, Biosensors, 1989, 4, 287 CrossRef CAS.
  46. P. van den Winkel, J. Martens and D. L. Massart, Anal. Chem., 1974, 46, 1167.
  47. I. Gutmann and H. U. Bergmeyer, in Methoden der Enzymatischen Analyse, ed. Bergmeyer, H. U., Verlag-Chemie, Weinheim, 3rd edn., 1974, p. 1842 Search PubMed.
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