Ahlmann N, Niehoff A, Rinas U, Scheper T and Schügerl K, (1986) Continuous on-line monitoring of intracellular enzyme activity. Anal. Chim. Acta 190: 221-226.
Google Scholar
Blankenstein G and Kula M-R (1991) Cell permeabilisation as a tool for measurement of intracellular enzyme activity in a flow-injection system. Anal. Chim. Acta 248: 371-378.
Google Scholar
Gustavsson P-E and Larsson P-O (1999) Continuous superporous agarose beds for chromatography and electrophoresis. J. Chromatogr. A 832: 29-39.
Google Scholar
Khayyami M, Pita M, Garcia N, Johansson G, Danielsson B and Larsson P-O (1997) Development of an amperometric biosensor based on acetylcholine esterase covalently bound to a new support material. Talanta 45: 557-563.
Google Scholar
Kracke-Helm H-A, Brandes L, Hitzmann B, Rinas U and Shügerl K (1991) On-line determination of intracellular ß-galactosidase activity in recombinant Escherichia coli using flow injection analysis (FIA). J. Biotechnol. 20: 95-104.
Google Scholar
Kyröläinen M, Håkanson H and Mattiasson B (1995) On-line calibration of a computerised biosensor system for continuous measurements of glucose and lactate. Biotecnol. Bioeng. 45: 122-128.
Google Scholar
Levenspiel O (1972) Chemical reaction engineering, 2nd edn, Chapter 9. John Wiley, New York.
Google Scholar
March SC, Parikh I and Cuatrecasas P (1974) A simplified method for cyanogen bromide activation of agarose for affinity chromatography. Anal. Biochem. 60: 149-152.
Google Scholar
Mattiasson B and Håkanson H (1993) Sampling and sample handling — crucial steps in process monitoring and control. Trends Biotechnol. 11: 136-142.
Google Scholar
Mattiasson B and Nandakumar MP (1999) Binding assays in heterogenous media using a flow injection system with an expanded micro-bed adsorption column. Bioseparation 8: 237-245.
Google Scholar
Nandakumar MP, Lali AM and Mattiasson B (1999a) On-line monitoring of glucose and/or lactate in fermentation process using an expanded micro-bed flow injection analyser. Bioseparation 8: 229-235.
Google Scholar
Nandakumar M P, Tocaj A and Mattiasson B (1999b) Use of a micro-expanded bed containing immobilised lysozyme for cell disruption in flow injection analysis. Bioseparation 8(1/5): 247-254.
Google Scholar
Nilsson K and Mosbach K (1984) Immobilization of ligands with organic solfonyl chlorides. Methods Enzymol. 104, 56-69.
Google Scholar
Nilsson M, Håkansson H and Mattiasson B (1992) Evaluation of direct versus competitive binding assays in flow injection systems. Proc. Control Qual. 4: 37-45
Google Scholar
Pålsson E, Nandakumar MP, Mattiasson B and Larsson P-O (2000) Miniaturised expanded-bed column with low dispersion suitable for fast flow-ELISA analyses. Biotechnol. Letters 22: 245-250.
Google Scholar
Recktenwald A, Kroner K-H and Kula M-R (1985) On-line monitoring of enzymes in downstream processing by flow injection analysis (FIA). Enzyme Microb. Technol. 7: 607-611.
Google Scholar
Steube K and Spohn U (1994) On-line monitoring of intracellular activities with flow-injection analysis. Anal. Chim. Acta 287: 235-246.
Google Scholar
Tocaj A, Nandakumar MP, Holst O and Mattiason B (1999) Flow injection analysis of intracellular ß-galactosidase in Escherichia coli cultivations, using an on-line system including cell disruption, debris separation and immunochemical quantification. Bioseparation 8: 255-267.
Google Scholar
Valero F, Lafuente FJ, Solà C, Benito A, Vidal M, Cairó J and Villaverde A (1992) Simultaneous on-line monitoring of intracellular β-galactosidase activity and biomass using flow injection analysis in Escherichia coli batch fermentations. Biotech. Tech. 6: 213-218.
Google Scholar