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Original Articles

Analysis of Group Retention Contributions for Peptides Separated by Reversed Phase High Performance Liquid Chromatography

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Pages 1745-1764 | Published online: 06 Dec 2006

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Read on this site (7)

Myhuong T. Nguyen, Alan L. Chaffee, Reinhard I. Boysen, Dan V. Nicolau & Milton T.W. Hearn. (2016) A versatile modelling approach to determine the hydrophobicity of peptides at the atomic level. Molecular Simulation 42:4, pages 257-269.
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B. De Collongue, N.M. Gosselet, B. Sébille & B. Schoot. (1994) Comparative Study of Different Predictive Methods of Peptides Retention Time on Chromatographic Reversed-Phase Columns. Journal of Liquid Chromatography 17:20, pages 4349-4364.
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Oscar Hernandez, Karen Dermott & LawrenceH. Lazarus. (1984) High-Performance Liquid Chromatography of Amphibian Peptides. Selectivity Changes Induced by pH. Journal of Liquid Chromatography 7:5, pages 893-905.
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FredricM. Rabel & DebraA. Martin. (1983) Protein Separations on Octyl and Diphenyl Bonded Phases. Journal of Liquid Chromatography 6:13, pages 2465-2499.
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DonaldJ. Pietrzyk, RonaldL. Smith & William R. Cahill$suffix/text()$suffix/text(). (1983) The Influence of Peptioe Structure on the Retention of Small Chain Peptides on Reverse Stationary Phases. Journal of Liquid Chromatography 6:9, pages 1645-1671.
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E. Minasian, R.S. Sharma, S.J. Leach, B. Grego & M.T. W. Hearn. (1983) A Comparative Study of the Separation of the Tryptic Peptides of the β-Chain of Normal and Abnormal Hemoglobins by Reversed Phase High Performance Liquid Chromatography. Journal of Liquid Chromatography 6:2, pages 199-213.
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Articles from other publishers (46)

Junyao Wang, Aiying Yu, Byeong Gwan Cho & Yehia Mechref. (2023) Assessing the Hydrophobicity of Glycopeptides Using Reversed-Phase Liquid Chromatography and Tandem Mass Spectrometry. Journal of Chromatography A, pages 464237.
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Majors J. Badgett, Barry Boyes & Ron Orlando. (2018) Peptide retention prediction using hydrophilic interaction liquid chromatography coupled to mass spectrometry. Journal of Chromatography A 1537, pages 58-65.
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Irina A. Tarasova, Christophe D. Masselon, Alexander V. Gorshkov & Mikhail V. Gorshkov. (2016) Predictive chromatography of peptides and proteins as a complementary tool for proteomics. The Analyst 141:16, pages 4816-4832.
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Irina A. Tarasova, Anton A. Goloborodko, Tatyana Y. Perlova, Marina L. Pridatchenko, Alexander V. Gorshkov, Victor V. Evreinov, Alexander R. Ivanov & Mikhail V. Gorshkov. (2015) Application of Statistical Thermodynamics To Predict the Adsorption Properties of Polypeptides in Reversed-Phase HPLC. Analytical Chemistry 87:13, pages 6562-6569.
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Pradeep B. Kunda, Fernando Benavente, Sergio Catalá-Clariana, Estela Giménez, José Barbosa & Victoria Sanz-Nebot. (2012) Identification of bioactive peptides in a functional yogurt by micro liquid chromatography time-of-flight mass spectrometry assisted by retention time prediction. Journal of Chromatography A 1229, pages 121-128.
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Ravi C. Dwivedi, Vic Spicer & Oleg V. Krokhin. 2011. Sample Preparation in Biological Mass Spectrometry. Sample Preparation in Biological Mass Spectrometry 1031 1050 .
Oleg V. Krokhin & Vic Spicer. (2009) Peptide Retention Standards and Hydrophobicity Indexes in Reversed-Phase High-Performance Liquid Chromatography of Peptides. Analytical Chemistry 81:22, pages 9522-9530.
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Kosaku Shinoda, Masahiro Sugimoto, Masaru Tomita & Yasushi Ishihama. (2008) Informatics for peptide retention properties in proteomic LC-MS. PROTEOMICS 8:4, pages 787-798.
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Brian Tripet, Dziuleta Cepeniene, James M. Kovacs, Colin T. Mant, Oleg V. Krokhin & Robert S. Hodges. (2007) Requirements for prediction of peptide retention time in reversed-phase high-performance liquid chromatography: Hydrophilicity/hydrophobicity of side-chains at the N- and C-termini of peptides are dramatically affected by the end-groups and location. Journal of Chromatography A 1141:2, pages 212-225.
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James M. Kovacs, Colin T. Mant, Stanley C. Kwok, David J. Osguthorpe & Robert S. Hodges. (2006) Quantitation of the nearest-neighbour effects of amino acid side-chains that restrict conformational freedom of the polypeptide chain using reversed-phase liquid chromatography of synthetic model peptides with l- and d-amino acid substitutions. Journal of Chromatography A 1123:2, pages 212-224.
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I. N. Azarova, G. I. Baram & E. L. Gols’dberg. (2006) Prediction of retention volumes and UV spectra of peptides in reversed phase HPLC. Russian Journal of Bioorganic Chemistry 32:1, pages 50-56.
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James M. Kovacs, Colin T. Mant & Robert S. Hodges. (2006) Determination of intrinsic hydrophilicity/hydrophobicity of amino acid side chains in peptides in the absence of nearest-neighbor or conformational effects. Biopolymers 84:3, pages 283-297.
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M. Shibue, C.T. Mant & R.S. Hodges. (2005) Effect of anionic ion-pairing reagent concentration (1–60mM) on reversed-phase liquid chromatography elution behaviour of peptides. Journal of Chromatography A 1080:1, pages 58-67.
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T. Yoshida, T. Okada, T. Hobo & R. Chiba. (2000) Calculation of amino acid hydrophilicity indices for retention of peptides on amide, diol and silica columns in normal-phase liquid chromatography. Chromatographia 52:7-8, pages 418-424.
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Tatsunari Yoshida. (1998) Calculation of peptide retention coefficients in normal-phase liquid chromatography. Journal of Chromatography A 808:1-2, pages 105-112.
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Chhabil Dass, P. Mahalakshmi & Deidrea Grandberry. (1994) Manipulation of ion-pairing reagents for reversed-phase high-performance liquid chromatographic separation of phosphorylated opioid peptides from their non-phosphorylated analogues. Journal of Chromatography A 678:2, pages 249-257.
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Colin T. Mant, Nian E. Zhou & Robert S. Hodges. 1992. Chromatography, 5th edition. Chromatography, 5th edition B75 B150 .
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Colin T. Mant, T.W. Lorne Burke, Nian E. Zhou, J.M.Robert Parker & Robert S. Hodges. (1989) Reversed-phase chromatographic method development for peptide separations using the computer simulation program prodigest-lc. Journal of Chromatography A 485, pages 365-382.
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Tai-Tung Yip, Yasuo Nakagawa & Jerker Porath. (1989) Evaluation of the interaction of peptides with Cu(II), Ni(II), and Zn(II) by high-performance immobilized metal ion affinity chromatography. Analytical Biochemistry 183:1, pages 159-171.
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Colin T. Mant, Nian E. Zhou & Robert S. Hodges. (1989) Correlation of protein retention times in reversed-phase chromatography with polypeptide chain length and hydrophobicity. Journal of Chromatography A 476, pages 363-375.
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Colin T. Mant, T.W.Lorne Burke, James A. Black & Robert S. Hodges. (1988) Effect of peptide chain length on peptide retention behaviour in reversed-phase chromatogrphy. Journal of Chromatography A 458, pages 193-205.
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