The Experts below are selected from a list of 67620 Experts worldwide ranked by ideXlab platform
Terrence Albert Vick - One of the best experts on this subject based on the ideXlab platform.
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Development and application of radio-size-Exclusion Chromatography
Journal of Chromatography A, 1996Co-Authors: I.p. Aspin, Brendan J. Howlin, John R. Jones, Mark J. Parker, Jeremy C. Russell, Ian Hamerton, Terrence Albert VickAbstract:Abstract The development of radio-size-Exclusion Chromatography and its application to two widely different areas, (a) the determination of the radiochemical purity of 3H- and 14C-labelled biopolymers and (b) the kinetics of epoxy resin formation, is reported. The versatility of the instrument is also reflected in the fact that it is able to function in one of four modes, i.e. HPLC, radio-HPLC, SEC and radio-SEC.
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Development and application of radio-size-Exclusion Chromatography
Journal of Chromatography A, 1996Co-Authors: I.p. Aspin, Brendan J. Howlin, John R. Jones, Mark J. Parker, Jeremy C. Russell, Ian Hamerton, Terrence Albert VickAbstract:Abstract The development of radio-size-Exclusion Chromatography and its application to two widely different areas, (a) the determination of the radiochemical purity of 3H- and 14C-labelled biopolymers and (b) the kinetics of epoxy resin formation, is reported. The versatility of the instrument is also reflected in the fact that it is able to function in one of four modes, i.e. HPLC, radio-HPLC, SEC and radio-SEC.
JOHANNES THEODORUS FAUSTINUS KEURENTJES - One of the best experts on this subject based on the ideXlab platform.
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Viral clearance using surfactant‐aided size‐Exclusion Chromatography
Aiche Journal, 2007Co-Authors: D.a. Horneman, Marcel Ottens, Luuk A.m. Van Der Wielen, JOHANNES THEODORUS FAUSTINUS KEURENTJESAbstract:Surfactant-aided size-Exclusion Chromatography (SASEC) is applied to the viral clearance of blood proteins, taking BSA as an example. Fixed bed systems as well as simulated moving bed (SMB) systems are examined. SASEC shows a better performance of this separation in terms of log reduction value (LRV), productivity of BSA, yield on BSA and solvent consumption compared to normal size-Exclusion Chromatography (SEC) in fixed bed as well as in SMB systems. © 2007 American Institute of Chemical Engineers AIChE J, 2007
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Surfactant-aided size Exclusion Chromatography
Journal of Chromatography B, 2004Co-Authors: D.a. Horneman, M.w. Wolbers, M. Zomerdijk, Marcel Ottens, JOHANNES THEODORUS FAUSTINUS KEURENTJES, Luuk A.m. Van Der WielenAbstract:The flexibility and selectivity of size Exclusion Chromatography (SEC) for protein purification can be modified by adding non-ionic micelle-forming surfactants to the mobile phase. The micelles exclude proteins from a liquid phase similar to the Exclusion effect of the polymer fibers of the size Exclusion resin. This surfactant-aided size Exclusion Chromatography technology (SASEC) is demonstrated on the separation of two model proteins; bovine serum albumin (BSA) and myoglobin (Myo). The effect of the added surfactants on the distribution behavior of the proteins is predicted adequately by a size Exclusion model presented in this paper.
I.p. Aspin - One of the best experts on this subject based on the ideXlab platform.
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Development and application of radio-size-Exclusion Chromatography
Journal of Chromatography A, 1996Co-Authors: I.p. Aspin, Brendan J. Howlin, John R. Jones, Mark J. Parker, Jeremy C. Russell, Ian Hamerton, Terrence Albert VickAbstract:Abstract The development of radio-size-Exclusion Chromatography and its application to two widely different areas, (a) the determination of the radiochemical purity of 3H- and 14C-labelled biopolymers and (b) the kinetics of epoxy resin formation, is reported. The versatility of the instrument is also reflected in the fact that it is able to function in one of four modes, i.e. HPLC, radio-HPLC, SEC and radio-SEC.
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Development and application of radio-size-Exclusion Chromatography
Journal of Chromatography A, 1996Co-Authors: I.p. Aspin, Brendan J. Howlin, John R. Jones, Mark J. Parker, Jeremy C. Russell, Ian Hamerton, Terrence Albert VickAbstract:Abstract The development of radio-size-Exclusion Chromatography and its application to two widely different areas, (a) the determination of the radiochemical purity of 3H- and 14C-labelled biopolymers and (b) the kinetics of epoxy resin formation, is reported. The versatility of the instrument is also reflected in the fact that it is able to function in one of four modes, i.e. HPLC, radio-HPLC, SEC and radio-SEC.
D.a. Horneman - One of the best experts on this subject based on the ideXlab platform.
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Viral clearance using surfactant‐aided size‐Exclusion Chromatography
Aiche Journal, 2007Co-Authors: D.a. Horneman, Marcel Ottens, Luuk A.m. Van Der Wielen, JOHANNES THEODORUS FAUSTINUS KEURENTJESAbstract:Surfactant-aided size-Exclusion Chromatography (SASEC) is applied to the viral clearance of blood proteins, taking BSA as an example. Fixed bed systems as well as simulated moving bed (SMB) systems are examined. SASEC shows a better performance of this separation in terms of log reduction value (LRV), productivity of BSA, yield on BSA and solvent consumption compared to normal size-Exclusion Chromatography (SEC) in fixed bed as well as in SMB systems. © 2007 American Institute of Chemical Engineers AIChE J, 2007
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Surfactant-aided size Exclusion Chromatography
Journal of Chromatography B, 2004Co-Authors: D.a. Horneman, M.w. Wolbers, M. Zomerdijk, Marcel Ottens, JOHANNES THEODORUS FAUSTINUS KEURENTJES, Luuk A.m. Van Der WielenAbstract:The flexibility and selectivity of size Exclusion Chromatography (SEC) for protein purification can be modified by adding non-ionic micelle-forming surfactants to the mobile phase. The micelles exclude proteins from a liquid phase similar to the Exclusion effect of the polymer fibers of the size Exclusion resin. This surfactant-aided size Exclusion Chromatography technology (SASEC) is demonstrated on the separation of two model proteins; bovine serum albumin (BSA) and myoglobin (Myo). The effect of the added surfactants on the distribution behavior of the proteins is predicted adequately by a size Exclusion model presented in this paper.
Luuk A.m. Van Der Wielen - One of the best experts on this subject based on the ideXlab platform.
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Viral clearance using surfactant‐aided size‐Exclusion Chromatography
Aiche Journal, 2007Co-Authors: D.a. Horneman, Marcel Ottens, Luuk A.m. Van Der Wielen, JOHANNES THEODORUS FAUSTINUS KEURENTJESAbstract:Surfactant-aided size-Exclusion Chromatography (SASEC) is applied to the viral clearance of blood proteins, taking BSA as an example. Fixed bed systems as well as simulated moving bed (SMB) systems are examined. SASEC shows a better performance of this separation in terms of log reduction value (LRV), productivity of BSA, yield on BSA and solvent consumption compared to normal size-Exclusion Chromatography (SEC) in fixed bed as well as in SMB systems. © 2007 American Institute of Chemical Engineers AIChE J, 2007
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Surfactant-aided size Exclusion Chromatography
Journal of Chromatography B, 2004Co-Authors: D.a. Horneman, M.w. Wolbers, M. Zomerdijk, Marcel Ottens, JOHANNES THEODORUS FAUSTINUS KEURENTJES, Luuk A.m. Van Der WielenAbstract:The flexibility and selectivity of size Exclusion Chromatography (SEC) for protein purification can be modified by adding non-ionic micelle-forming surfactants to the mobile phase. The micelles exclude proteins from a liquid phase similar to the Exclusion effect of the polymer fibers of the size Exclusion resin. This surfactant-aided size Exclusion Chromatography technology (SASEC) is demonstrated on the separation of two model proteins; bovine serum albumin (BSA) and myoglobin (Myo). The effect of the added surfactants on the distribution behavior of the proteins is predicted adequately by a size Exclusion model presented in this paper.