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- W2038585493 abstract "Annals of the New York Academy of SciencesVolume 413, Issue 1 p. 352-354 A Novel Process for High-Maltose Syrup Production from Barley Starch Y.-Y. LINKO, Y.-Y. LINKO Laboratory of Biochemistry and Food Technology Department of Chemistry Helsinki University of Technology, SF-02150 Espoo 15. FinlandSearch for more papers by this authorH. MÄKELÄ, H. MÄKELÄ Laboratory of Biochemistry and Food Technology Department of Chemistry Helsinki University of Technology, SF-02150 Espoo 15. FinlandSearch for more papers by this authorP. LINKO, P. LINKO Laboratory of Biochemistry and Food Technology Department of Chemistry Helsinki University of Technology, SF-02150 Espoo 15. FinlandSearch for more papers by this author Y.-Y. LINKO, Y.-Y. LINKO Laboratory of Biochemistry and Food Technology Department of Chemistry Helsinki University of Technology, SF-02150 Espoo 15. FinlandSearch for more papers by this authorH. MÄKELÄ, H. MÄKELÄ Laboratory of Biochemistry and Food Technology Department of Chemistry Helsinki University of Technology, SF-02150 Espoo 15. FinlandSearch for more papers by this authorP. LINKO, P. LINKO Laboratory of Biochemistry and Food Technology Department of Chemistry Helsinki University of Technology, SF-02150 Espoo 15. FinlandSearch for more papers by this author First published: December 1983 https://doi.org/10.1111/j.1749-6632.1983.tb47911.xCitations: 6AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat No abstract is available for this article. References 1 Johnston, M. D., G. Christofinis, G. D. Ball, K. H. Fantes & N. B. Finter 1979. A culture system for producing large amounts of human lymphoblastoid interferon. In Developments in Biological Standardization. R. H. Regamey, R. Speir & F. Horodniceanu Vol. 42: 189–192. S. Karger. Basel . 2 Aharonowitz, Y. & G. Cohen 1981. The microbiological production of pharmaceuticals. Sci. Am. 245: 141–152. 3 Girard, H. C. 1977. Problems encountered in large-scale production plants. In Cell Culture and Its Applications. R. T. Acton & J. D. Lynn Academic Press. New York pp. 111–127. 4 Jacobs, J. B. 1979. Serially propagated human diploid cells: A synopsis of the present position concerning their use for producing viral vaccines and interferon. In Developments in Biological Standardization. R. H. Regamey, R. Spier & F. Horodniceanu Vol. 42: 13–18. S. Karger. 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Am. 248: 36–43. 18 Lim, F. & R. D. Moss 1981. Microencapsulation of living cells and tissues. In Microencapsulation: Selected Papers from the 47th International Symposium on Microencapsulation. M. H. Furguson American Pharmaceutical Society. Washington , D.C. pp. 1–4. 19 Damon Corporation. 1981. Tissue Encapsulation. Press release. 20 Fleischaker, R. J. 1982. An experimental study in the use of instrumentation to analyzemetabolism and product formation in cell culture. Ph.D. Thesis, M.I.T. 21 Katinger, H. W., W. Scheirer & E. Kroemer 1978. Der blasensaulenfermenter fur die massensuspension Kultur tierlscher zellen. Chem. Ing. Tech. 50: 472–473. 22 Green, M., G. Henle & F. Deinhardt 1958. Respiration and glycolysis of human cells grown in tissue culture. Virology 5: 206–219. 23 Keay, L. & C. W. Bruton 1979. Recent advances in the technology of animal cell production. Proc. Biochem. pp. 17–21. 24 Danes, S. B., M. M. Broadfoot & J. Paul 1963. A comparative study of respiratory metabolism in cultured mammalian cell strains. Exp. Cell. Res. 30: 369–378. 25 Wang, D. I. C., C. L. Cooney, A. L. Demain, P. Dunnill, A. E. Humphery & M. D. Lilley 1979. Chapter 9. In Fermentation and Enzyme Technology. John Wiley and Sons. New York . 26 Kilburn, D. G. & F. C. Webb 1968. The cultivation of animal cells at controlled dissolved oxygen partial pressure. Biotechnol. Bioeng. 10: 801–814. 27 Sinskey, A. J., R. J. Fleischaker, M. A. Tyo, D. J. Giard & D. I. C. Wang 1981. Production of cell-derived products: Virus and Interferon. Ann. N.Y. Acad. Sci. 369: 47–60. 28 Clark, J. M. & M. D. Hirtenstein 1981. Optimizing culture conditions for the production of animal cells in microcarrier culture. Ann. N.Y. Acad. Sci. 369: 33–46. 29 Glacken, M. W. & A. J. Sinskey Ammonia production and glutamine metabolism of cultured mammalian cells. In press. 30 Eagle, H., S. Barban, M. Levy & H. O. Schulze 1958. The utilization of carbohydrates by human cell cultures. J. Biol. Chem. 233: 551–558. 31 Thomas, J. T. & W. G. Thilly Personal communication. 32 van Wezel, A. L. 1973. Microcarrier culture of animal cells. In Tissue Culture: Methods and Applications. P. F. Kruse & M. K. Patterson Academic Press. New York pp. 372–377. 33 Ku, K., M. J. Kuo, J. Delente, B. J. Wildi & J. Feder 1981. Development of a hollow-fiber system for large-scale culture of mammalian cells. Biotechnol. Bioeng. 23: 79–95. 34 Bailey, J. E. & D. F. Ollis 1977. Biochemical Engineering Fundamentals. McGraw-Hill. New York pp. 393–401. 35 Fleischaker, R. J. & A. J. Sinskey 1981. Oxygen demand and supply in cell culture. Eur. J. Appl. Microbiol. Biotechnol. 12: 193–197. Citing Literature Volume413, Issue1Biochemical Engineering IIIDecember 1983Pages 352-354 ReferencesRelatedInformation" @default.
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