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Pharmaceutical and biomedical applications of capillary electrophoresis / edited by Susan M. Lunte, Donna M. Radzik.

Contributor(s): Series: Progress in pharmaceutical and biomedical analysis ; v. 2.1996Edition: 1st edDescription: 1 online resource (x, 511 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780080420141
  • 0080420141
  • 9780080538716
  • 0080538711
  • 1281071943
  • 9781281071941
Subject(s): Genre/Form: Additional physical formats: Print version:: Pharmaceutical and biomedical applications of capillary electrophoresis.; Online version:: Pharmaceutical and biomedical applications of capillary electrophoresis.LOC classification:
  • QP519.9.C36 P48 1996eb
NLM classification:
  • W1
  • QU 25
Online resources:
Contents:
Section headings and papers: List of Contributors. Introduction. Separations. Principles and theory of capillary electrophoresis (S.M. Lunte, D.M. Radzik). Column technologies for capillary electrophoresis (J.K. Towns, F.E. Regnier). Electrokinetic chromatography (J.P. Foley, E.S. Ahuja). Detection. Optical detection strategies in capillary electrophoresis (S.A. Soper). Capillary electrophoresis/mass spectrometry (R.D. Smith, H.R. Udseth). Electrochemical detection for capillary electrophoresis (T.J. O'Shea). Applications. Sample preparations for capillary electrophoresis (D.K. Lloyd). Capillary electrophoresis in the study of amino acids (P.L. Weber). Capillary electrophoresis of peptides and proteins (K.L. Kostel). Separation of nucleic acids and oligonucleotides and sequencing of DNA fragments by capillary electrophoresis (R.P. Singhal, Jun Xian). The use of capillary electrophoresis in pharmaceutical development (Sou Chan Chang <IT>et al.</IT>). Capillary electrophoresis-based methods for <IT>in vivo</IT> analysis: single cell analysis and microdialysis sampling (B.L. Hogan). Index.
Action note:
  • digitized 2010 HathiTrust Digital Library committed to preserve
Summary: The book describes the theory and applications of Capillary Electrophoresis (CE) in the field of pharmaceutical and biomedical analysis. It is targeted towards users who are intimately involved in analytical problems, especially those which involve small samples. This book presents the technique of capillary electrophoresis from the point of view of the serious hands-on use in the field of pharmaceutical and biomedical analysis. An overview of general theory is presented to acquaint the novice with the fundamental principles. A more theoretical approach is taken in the presentation of electrokinetic chromatography. The next chapter discusses advances in column technologies, the preceding chapters having provided a foundation as to how separations occur. In the next three chapters, recognized experts in their fields present fundamentals and state-of-the-art techniques in the areas of optical, electrochemical and mass spectrometric detection. The major focus of the remaining chapters is on applications. This includes the analysis of pharmaceuticals, amino acids and peptides, macromolecules, nucleosides, nucleotides and oligonucleotides. The use of CE for analysis of small ions and separation of biological particles is also discussed. The issue of sample preparation for analysis by CE is addressed, especially as it relates to clinical analysis.
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The book describes the theory and applications of Capillary Electrophoresis (CE) in the field of pharmaceutical and biomedical analysis. It is targeted towards users who are intimately involved in analytical problems, especially those which involve small samples. This book presents the technique of capillary electrophoresis from the point of view of the serious hands-on use in the field of pharmaceutical and biomedical analysis. An overview of general theory is presented to acquaint the novice with the fundamental principles. A more theoretical approach is taken in the presentation of electrokinetic chromatography. The next chapter discusses advances in column technologies, the preceding chapters having provided a foundation as to how separations occur. In the next three chapters, recognized experts in their fields present fundamentals and state-of-the-art techniques in the areas of optical, electrochemical and mass spectrometric detection. The major focus of the remaining chapters is on applications. This includes the analysis of pharmaceuticals, amino acids and peptides, macromolecules, nucleosides, nucleotides and oligonucleotides. The use of CE for analysis of small ions and separation of biological particles is also discussed. The issue of sample preparation for analysis by CE is addressed, especially as it relates to clinical analysis.

Section headings and papers: List of Contributors. Introduction. Separations. Principles and theory of capillary electrophoresis (S.M. Lunte, D.M. Radzik). Column technologies for capillary electrophoresis (J.K. Towns, F.E. Regnier). Electrokinetic chromatography (J.P. Foley, E.S. Ahuja). Detection. Optical detection strategies in capillary electrophoresis (S.A. Soper). Capillary electrophoresis/mass spectrometry (R.D. Smith, H.R. Udseth). Electrochemical detection for capillary electrophoresis (T.J. O'Shea). Applications. Sample preparations for capillary electrophoresis (D.K. Lloyd). Capillary electrophoresis in the study of amino acids (P.L. Weber). Capillary electrophoresis of peptides and proteins (K.L. Kostel). Separation of nucleic acids and oligonucleotides and sequencing of DNA fragments by capillary electrophoresis (R.P. Singhal, Jun Xian). The use of capillary electrophoresis in pharmaceutical development (Sou Chan Chang <IT>et al.</IT>). Capillary electrophoresis-based methods for <IT>in vivo</IT> analysis: single cell analysis and microdialysis sampling (B.L. Hogan). Index.

Includes bibliographical references and index.

Print version record.

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