By Eli Grushka, Nelu Grinberg
For greater than 4 many years, scientists and researchers have relied upon the Advances in Chromatography sequence for the main updated details on quite a lot of advancements in chromatographic equipment and purposes. protecting the cutting-edge in separation technology, this quantity maintains to provide well timed, state of the art experiences on chromatography within the fields of bio-, analytical, natural, polymer, and pharmaceutical chemistry. Compiled by way of top researchers from worldwide, new chapters conceal subject matters with regards to countercurrent chromatography and large-scale genotyping in addition to cyclic voltammetry detection, a robust instrument for picking out the electrochemical features of natural compounds.
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Additional info for Advances in Chromatography, Volume 47
2006. Monoclonal antibody carbohydrate structure sequencing using mass spectrometry and OSCAR: An algorithm for assigning oligosaccharide topology from MSn data. Presented at the 54th ASMS Conference on Mass Spectrometry and Allied Topics, Seattle, WA, May 28 to June 1. 61. Ashline, D. , Lapadula, A. , Liu, Y. , Pramanik, B. , and Reinhold, V. N. 2007. Carbohydrate structural isomers analyzed by sequential mass spectrometry. Anal. Chem. 79: 3830–3842. 62. Cohen, P. 2000. The regulation of protein function by multisite phosphorylation— a 25 year update.
L. and Campbell, J. M. 2005. Tandem time-of-flight mass spectrometry. Methods Enzymol. 402: 79–108. 16. Chernushevich, I. , Loboda, A. , and Thomson, B. A. 2001. An introduction to quadrupole-time-of-flight mass spectrometry. J. Mass Spectrom. 36: 849–865. 17. , Noll, R. , and Cooks, R. G. 2005. The orbitrap: A new mass spectrometer. J. Mass Spectrom. 40: 430–443. 18. , and Horning, S. 2006. Performance evaluation of a hybrid linear ion trap/orbitrap mass spectrometer. Anal. Chem. 78: 2113–2120.
2004. Top-down proteomics. Anal. Chem. 76: 197A–203A. 41. , Lawhorn, B. , Park, J. , Begley, T. , and McLafferty, F. W. 2002. Top down characterization of larger proteins (45 kDa) by electron capture dissociation mass spectrometry. J. Am. Chem. Soc. 124: 672–678. 42. Cooper, H. , and Marshall, A. G. 2005. The role of electron capture dissociation in biomolecular analysis. Mass Spectrom. Rev. 24: 201–222. 43. Syka, J. , Coon, J. , Schroeder, M. , and Hunt, D. F. 2004. Peptide and protein sequence analysis by electron transfer dissociation mass spectrometry.