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1.
J Chromatogr B Analyt Technol Biomed Life Sci ; 858(1-2): 205-10, 2007 Oct 15.
Article in English | MEDLINE | ID: mdl-17869592

ABSTRACT

This study evaluates the influence of type of salt and temperature on the partition coefficient of caseinomacropetide (CMP) to determine the best conditions for the recovery of CMP in aqueous two-phase systems (ATPS) composed by poly(ethylene glycol) (PEG) 1500 and an inorganic salt (potassium phosphate, sodium citrate, lithium sulfate or sodium sulfate). In all systems, CMP presented affinity for the PEG-rich phase. The PEG1500+lithium sulfate showed the highest values of partitioning coefficient. In addition, thermodynamic parameters (DeltaH degrees , DeltaS degrees , DeltaG degrees) as a function of temperature, were calculated for the system PEG1500-sodium citrate at different PEG concentrations and the results imply thermodynamic differences between partitioning of CMP in this system.


Subject(s)
Caseins/chemistry , Chemical Fractionation/methods , Peptide Fragments/chemistry , Polyethylene Glycols/chemistry , Salts/chemistry , Temperature , Thermodynamics , Water/chemistry
2.
Article in English | MEDLINE | ID: mdl-16750942

ABSTRACT

Hydrophobic adsorption equilibrium data of the hen egg white proteins albumin, conalbumin, and lysozyme were obtained in batch systems, at 25 degrees C, using the Streamline Phenyl resin as adsorbent. The influence of three types of salt, NaCl, Na(2)SO(4), or (NH(4))(2)SO(4), and their concentration on the equilibrium data were evaluated. The salt Na(2)SO(4) showed the higher interaction with the studied proteins, thus favoring the adsorption of proteins by the adsorbent, even though each type of salt interacted in a distinct manner with each protein. The isotherm models of Langmuir, Langmuir exponential, and Chen and Sun were well fitted to the equilibrium data, with no significant difference being observed at the 5% level of significance. The mass transfer model applied simulated correctly adsorption kinetics of the proteins under the studied conditions.


Subject(s)
Albumins/chemistry , Conalbumin/chemistry , Muramidase/chemistry , Adsorption , Kinetics
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