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Optimization of intracellular product release from Neisseria denitrificans using microfluidizer.

Preparative biochemistry & biotechnology : an international journal for rapid communications, v.45 no.7, 2015년, pp.667 - 683  

Stupak, Robert ,  Makauskas, Nerijus ,  Radzevi??ius, Kostas ,  Valan??ius, Zenonas

Abstract AI-Helper 아이콘AI-Helper

Disruption of Neisseria denitrificans cells by microfluidizer was optimized using a factorial experiments design. The pH, pretreatment time, cell concentration, NaCl, ethylenediamine tetraacetic acid (EDTA) and Triton X-100 concentrations showed significant impact on disruption process and the proce...

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참고문헌 (30)

  1. Peternel, S.. Bacterial cell disruption: a crucial step in protein production. New biotechnology, vol.30, no.2, 250-254.

  2. Middelberg, Anton P.J.. Process-scale disruption of microorganisms. Biotechnology advances, vol.13, no.3, 491-551.

  3. Balasundaram, B., Pandit, A.B.. Selective release of invertase by hydrodynamic cavitation. Biochemical engineering journal, vol.8, no.3, 251-256.

  4. Ren, Xiaodong, Yu, Dawei, Yu, Lei, Gao, Gui, Han, Siping, Feng, Yan. A new study of cell disruption to release recombinant thermostable enzyme from Escherichia coli by thermolysis. Journal of biotechnology, vol.129, no.4, 668-673.

  5. Chisti, Y., Moo-Young, M.. Disruption of microbial cells for intracellular products. Enzyme and microbial technology, vol.8, no.4, 194-204.

  6. Harrison, S.T.L.. Bacterial cell disruption: A key unit operation in the recovery of intracellular products. Biotechnology advances, vol.9, no.2, 217-240.

  7. Geciova, Jana, Bury, Dean, Jelen, Paul. Methods for disruption of microbial cells for potential use in the dairy industry—a review. International dairy journal, vol.12, no.6, 541-553.

  8. Peternel, Špela, Komel, Radovan. Isolation of biologically active nanomaterial (inclusion bodies) from bacterial cells. Microbial cell factories, vol.9, 66-66.

  9. Rodríguez-Carmona, Escarlata, Cano-Garrido, Olivia, Seras-Franzoso, Joaquin, Villaverde, Antonio, García-Fruitós, Elena. Isolation of cell-free bacterial inclusion bodies. Microbial cell factories, vol.9, 71-71.

  10. van Gaver, D., Huyghebaert, A.. Optimization of yeast cell disruption with a newly designed bead mill. Enzyme and microbial technology, vol.13, no.8, 665-671.

  11. Anand, H., Balasundaram, B., Pandit, A.B., Harrison, S.T.L.. The effect of chemical pretreatment combined with mechanical disruption on the extent of disruption and release of intracellular protein from E. coli. Biochemical engineering journal, vol.35, no.2, 166-173.

  12. 10.3844/ajbbsp.2009.21.29 

  13. Ricci-Silva, M.E, Vitolo, M, Abrahão-Neto, J. Protein and glucose 6-phosphate dehydrogenase releasing from baker’s yeast cells disrupted by a vertical bead mill. Process biochemistry, vol.35, no.8, 831-835.

  14. Shynkaryk, M.V., Lebovka, N.I., Lanoiselle, J.L., Nonus, M., Bedel-Clotour, C., Vorobiev, E.. Electrically-assisted extraction of bio-products using high pressure disruption of yeast cells (Saccharomyces cerevisiae). Journal of food engineering, vol.92, no.2, 189-195.

  15. Ni, Hui, Chen, Qi-he, He, Guo-qing, Wu, Guang-bin, Yang, Yuan-fan. Optimization of acidic extraction of astaxanthin from Phaffia rhodozyma. Journal of Zhejiang University. Science B. Biomedicine & biotechnology, vol.9, no.1, 51-59.

  16. Mayerhoff, Z.D.V.L., Franco, T.T., Roberto, I.C.. A study of cell disruption of Candida mogii by glass bead mill for the recovery of xylose reductase. Separation and purification technology, vol.63, no.3, 706-709.

  17. Gurpilhares, Daniela B., Hasmann, Francislene A., Pessoa Jr., Adalberto, Roberto Jr., Inês C.. Optimization of glucose-6-phosphate dehydrogenase releasing from Candida guilliermondii by disruption with glass beads. Enzyme and microbial technology, vol.39, no.4, 591-595.

  18. Belo, I., Santos, J. A. L., Cabral, J. M. S., Mota, M.. Optimization Study of Escherichia coli TB1 Cell Disruption for Cytochrome b5 Recovery in a Small-Scale Bead Mill. Biotechnology progress, vol.12, no.2, 201-204.

  19. Rodriguez, M., Güereca, L., Valle, F., Quintero, R., López-Munguia, A.. Penicillin acylase extraction by osmotic shock. Process biochemistry, vol.27, no.4, 217-223.

  20. Methods in Biotechnology. Desai M.A. 11 9 2000 

  21. Mazeika, Darius, Stupak, Robert, Liesiene, Jolanta, Valancius, Zenonas. Effect of disruption methods on tangential flow microfiltration of Nocardia corallina cells. Current opinion in biotechnology, vol.22, no.suppl1, S61-S61.

  22. Salazar, Oriana. Bacteria and yeast cell disruption using lytic enzymes.. Methods in molecular biology, vol.424, 23-34.

  23. Stupak, R., Mažeika, D., Valančius, Z., Liesienė, J.. EVALUATION OF DISRUPTION METHODS FOR RELEASING INTRACELLULAR PRODUCT FROM COCCUS AND BACILLUS TYPE BACTERIAL CELLS. Chemical technology = Chemine Technologija, vol.59, no.1,

  24. DuBois, Michel., Gilles, K. A., Hamilton, J. K., Rebers, P. A., Smith, Fred.. Colorimetric Method for Determination of Sugars and Related Substances. Analytical chemistry, vol.28, no.3, 350-356.

  25. Biokhimiya (USSR) Spirin A.S. 656 23 1958 

  26. Bergmeyer, H.U. Methods of Enzymatic Analysis , volume 2. Verlag Chemie: Weinheim, 1984, 539. 

  27. Baldwin, Clark V., Robinson, Campbell W.. Enhanced disruption of Candida utilis using enzymatic pretreatment and high‐pressure homogenization. Biotechnology and bioengineering, vol.43, no.1, 46-56.

  28. Farkade, Vivek D., Harrison, Susan T.L., Pandit, Aniruddha B.. Improved cavitational cell disruption following pH pretreatment for the extraction of β-galactosidase from Kluveromyces lactis. Biochemical engineering journal, vol.31, no.1, 25-30.

  29. Bioseparation Harrison S.T.L. 95 2 1991 

  30. Lovitt, R.W, Jones, M, Collins, S.E, Coss, G.M, Yau, C.P, Attouch, C. Disruption of bakers’ yeast using a disrupter of simple and novel geometry. Process biochemistry, vol.36, no.5, 415-421.

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