The influence of disposal technology obtained with alkaline treatments on D-amino acid content of slaughterhouse waste

Szerzők

  • Sanja Kalambura Veleučiliste Velika Gorica, 10410 Velika Gorica, Zagrebaćka 5., Croatia
  • Katalin Lóki Kaposvár University, Faculty of Animal Science, 7400 Kaposvár, Guba S. u. 40., Hungary
  • Zsolt Mándoki Kaposvár University, Faculty of Animal Science, 7400 Kaposvár, Guba S. u. 40., Hungary
  • Éva Terlaky-Balla Kaposvár University, Faculty of Animal Science, 7400 Kaposvár, Guba S. u. 40., Hungary
  • János Csapó Kaposvár University, Faculty of Animal Science, 7400 Kaposvár, Guba S. u. 40., Hungary

Kulcsszavak:

slaughterhouse waste, waste treatment, alkaline hydrolysis, racemization of amino acids, D-amino acids

Absztrakt

In our experiment the change in D-amino acid content of slaughterhouse waste due to the treatments was examined. The treatments were done with sodium and potassium hydroxide solution, respectively, for 2, 3 and 6 hours at 135, 150 and 153 °C. Summarized, it can be said that due to the heat and alkali combinations we used aspartic acid, glutamic acid, tryptophan and isoleucine transform in 40–50% into the D-isomer. Even though the hydrolysed product obtained this way met in other parameters the requirements of the modern feeding, one should be expect that most of the amino acids undergo full racemization during this process.

Információk a szerzőről

  • Sanja Kalambura, Veleučiliste Velika Gorica, 10410 Velika Gorica, Zagrebaćka 5., Croatia

    corresponding author
    sanja.kalambura@vvg.hr

Hivatkozások

Csapó, J., Csapó-Kiss, Zs., Stefler, J., Martin, T. G., Némethy, S. (1995). Influence of mastitis on D-amino acid content of milk. J. Dairy Sci., 78. 11. 2375–2381. https://doi.org/10.3168/jds.S0022-0302(95)76865-5

Einarsson, S., Folestad, S., Josefsson, B. (1987). Separation of amino acid enantiomers using precolumn derivatization with o-phthalaldehyde and 2,3,4,6,-tetra-O-acetil-1- thio-ß-glucopyranoside. Journal Liquid Chromatography. 10. 8–9. 1589. https://doi.org/10.1080/01483918708066789

Ernst, D. R., Race, R. E. (1993). Comparatives analysis of scrapie agent inactivation. J. Vir. Meth., 41. 2. 193–202. https://doi.org/10.1016/0166-0934(93)90126-C

EU Directive 1774/2002

Friedman, M. (1991). Formation, nutritional value, and safety of D-amino acids. In: Nutritional and toxicological consequences of food processing. Plenum Press, New York, 447–481. https://doi.org/10.1007/978-1-4899-2626-5_31

Gruen, L. C., Nichols, P. W. (1972). Improved recovery of tryptophan following acid hydrolysis of proteins. Analitical Biochemistry. 47. 2. 348–355. https://doi.org/10.1016/0003-2697(72)90128-5

Imai, K., Fukushima, T., Santa, T., Homma, H., Hamase, K., Sakai, K., Kato, M. (1996). Analytical Chemistry and Biochemistry of D-Amino Acids. Biomedical Chromatography. 10. 6. 303–312. https://doi.org/10.1002/(SICI)1099-0801(199611)10:6<303::AID-BMC624>3.0.CO;2-B

Liu, T. Y., Chang, Y. H. (1971). Hydrolysis of Proteins with p-Toluenesulfonic Acid. Determination of Tryptophan. Journal of Biological Chemistry. 246. 9. 2842–2848. https://doi.org/10.1016/S0021-9258(18)62259-8

Kaye, G. I., Weber, P. B., Evans, A., Venezia, R. A. (1998). Efficacy of Alkaline Hydrolysis as an Alternative Method for Treatment and Disposal of Infectious Animal Waste. Contemporary Topics. 37. 3. 43–46.

Man, H., Bada, J. L. (1987). Dietary D-amino acids. Annual Review of Nutrition. 7. 209–225. https://doi.org/10.1146/annurev.nu.07.070187.001233

Tagochi, F., Tamai, Y., Uchida, K., Kitajima, R., Kojima, H., Kawaguchi, T., Ohtani, Y., Miura, A. (1991). Proposal for a procedure for complete inactivation of the Creutzfeldt-Jakob disease agent. Arch, Virol., 119. 297–301. https://doi.org/10.1007/BF01310679

Taylor, D. M. (2000). Inactivation of transmissible degenerative encephalopathy agents: A review. Vet. J., 159. 1. 10–17. https://doi.org/10.1053/tvjl.1999.0406

Taylor, D. M., Fernie, K., Steele, P. (1999). Boiling in sodium hydroxide inactivates mouse-passaged BSE agent. Abstracts of a Meeting of the Association of Veterinary Teachers and Research Wrokers. Scarborough, UK, 22.

Letöltések

Megjelent

2010-10-15

Folyóirat szám

Rovat

Poster Section

Hogyan kell idézni

Kalambura, S., Lóki, K., Mándoki, Z., Terlaky-Balla, Éva, & Csapó, J. (2010). The influence of disposal technology obtained with alkaline treatments on D-amino acid content of slaughterhouse waste. Acta Agraria Kaposváriensis, 14(2), 313-317. https://journal.uni-mate.hu/index.php/aak/article/view/2029

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