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PUBMED FOR HANDHELDS

Journal Abstract Search


232 related items for PubMed ID: 15894452

  • 1. Prediction of protein retention in hydrophobic interaction chromatography.
    Mahn A, Asenjo JA.
    Biotechnol Adv; 2005 Jul; 23(5):359-68. PubMed ID: 15894452
    [Abstract] [Full Text] [Related]

  • 2. Methods of calculating protein hydrophobicity and their application in developing correlations to predict hydrophobic interaction chromatography retention.
    Mahn A, Lienqueo ME, Salgado JC.
    J Chromatogr A; 2009 Mar 06; 1216(10):1838-44. PubMed ID: 19100553
    [Abstract] [Full Text] [Related]

  • 3. Mesoscopic simulation of adsorption of peptides in a hydrophobic chromatography system.
    Makrodimitris K, Fernandez EJ, Woolf TB, O'Connell JP.
    Anal Chem; 2005 Mar 01; 77(5):1243-52. PubMed ID: 15732903
    [Abstract] [Full Text] [Related]

  • 4. Modeling of protein monomer/aggregate purification and separation using hydrophobic interaction chromatography.
    McCue JT, Engel P, Ng A, Macniven R, Thömmes J.
    Bioprocess Biosyst Eng; 2008 Apr 01; 31(3):261-75. PubMed ID: 18205016
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  • 5. Investigation of protein retention and selectivity in HIC systems using quantitative structure retention relationship models.
    Ladiwala A, Xia F, Luo Q, Breneman CM, Cramer SM.
    Biotechnol Bioeng; 2006 Apr 05; 93(5):836-50. PubMed ID: 16276531
    [Abstract] [Full Text] [Related]

  • 6. Dynamic control of protein conformation transition in chromatographic separation based on hydrophobic interactions: molecular dynamics simulation.
    Zhang L, Lu D, Liu Z.
    J Chromatogr A; 2009 Mar 20; 1216(12):2483-90. PubMed ID: 19178912
    [Abstract] [Full Text] [Related]

  • 7. New approaches for predicting protein retention time in hydrophobic interaction chromatography.
    Lienqueo ME, Mahn A, Navarro G, Salgado JC, Perez-Acle T, Rapaport I, Asenjo JA.
    J Mol Recognit; 2006 Mar 20; 19(4):260-9. PubMed ID: 16752432
    [Abstract] [Full Text] [Related]

  • 8. Solvent modulation in hydrophobic interaction chromatography.
    Arakawa T, Narhi LO.
    Biotechnol Appl Biochem; 1991 Apr 20; 13(2):151-72. PubMed ID: 2043277
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  • 10. Prediction of protein retention times in gradient hydrophobic interaction chromatographic systems.
    Chen J, Yang T, Cramer SM.
    J Chromatogr A; 2008 Jan 11; 1177(2):207-14. PubMed ID: 18048048
    [Abstract] [Full Text] [Related]

  • 11. Hydrophobic interaction chromatography: harnessing multivalent protein-surface interactions for purification procedures.
    Jennissen HP.
    Methods Mol Biol; 2005 Jan 11; 305():81-99. PubMed ID: 15943009
    [Abstract] [Full Text] [Related]

  • 12. Evaluation of selectivity changes in HIC systems using a preferential interaction based analysis.
    Xia F, Nagrath D, Garde S, Cramer SM.
    Biotechnol Bioeng; 2004 Aug 05; 87(3):354-63. PubMed ID: 15281110
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  • 14. Current insights on protein behaviour in hydrophobic interaction chromatography.
    Lienqueo ME, Mahn A, Salgado JC, Asenjo JA.
    J Chromatogr B Analyt Technol Biomed Life Sci; 2007 Apr 15; 849(1-2):53-68. PubMed ID: 17141587
    [Abstract] [Full Text] [Related]

  • 15. Molecular insight into protein conformational transition in hydrophobic charge induction chromatography: a molecular dynamics simulation.
    Zhang L, Zhao G, Sun Y.
    J Phys Chem B; 2009 May 14; 113(19):6873-80. PubMed ID: 19374422
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  • 17. Prediction of retention time of cutinases tagged with hydrophobic peptides in hydrophobic interaction chromatography.
    Lienqueo ME, Salazar O, Henriquez K, Calado CR, Fonseca LP, Cabral JM.
    J Chromatogr A; 2007 Jun 22; 1154(1-2):460-3. PubMed ID: 17448484
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