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Physical Methods To Characterize Pharmaceutical Proteins 1995 Edition at Meripustak

Physical Methods To Characterize Pharmaceutical Proteins 1995 Edition by James N. Herron Wim Jiskoot Daan J.A. Crommelin , Springer

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  • General Information  
    Author(s)James N. Herron Wim Jiskoot Daan J.A. Crommelin
    PublisherSpringer
    ISBN9780306450266
    Pages362
    BindingHardback
    LanguageEnglish
    Publish YearOctober 1995

    Description

    Springer Physical Methods To Characterize Pharmaceutical Proteins 1995 Edition by James N. Herron Wim Jiskoot Daan J.A. Crommelin

    Proteins are still gaining importance in the pharmaceutical world where they are used to improve our arsenal of therapeutic drugs and vaccines and as diagnostic tools. Proteins are different from "traditional" low-molecular-weight drugs. As a group they exhibit a number of biopharmaceutical and formulation problems. These problems have drawn considerable interest from both industrial and aca demic environments forcing pharmaceutical scientists to explore a domain previ ously examined only by peptide and protein chemists. Biopharmaceutical aspects of proteins e.g. low oral bioavailability have been extensively investigated. Although all possible conventional routes of ad ministration have been examined for proteins no real generally applicable alter native to parenteral administration in order to achieve systemic effects has yet been discovered. Several of these biopharmaceutical options have been discussed in Volume 4 of this series Biological Barriers to Protein Delivery. Proteins are composed of many amino acids several of which are notorious for their chemical instability. Rational design of formulations that optimize the native structure and/or bioactivity of a protein is therefore of great importance when long shelf life is required as it is for pharmaceutical products. This issue has also been examined in two prior volumes of this series: Volume 2: Stability of Protein Pharmaceuticals (Part A) and Volume 5: Stability and Characterization of Protein and Peptide Drugs. Table of contents : Application of Fluorescence Spectroscopy for Determining the Structure and Function of Proteins; W. Jiskoot et al. Structural Information on Proteins from Circular Dichroism Spectroscopy: Possibilities and Limitations; M. Bloemendal W.C. Johnson Jr. Fourier Transform Infrared Spectroscopy Investigations of Protein Structure; E.A. Cooper K. Knutson. Two Three and Four-dimensional Nuclear Magnetic Resonance (NMR) Spectroscopy of Protein Pharmaceuticals; D.G. Vander Velde et al. Thermodynamic Strategies for Rational Protein and Drug Design; K.P. Murphy E. Freire. Chromatographic Techniques for the Characterization of Proteins; J.J.M. Hothuis R.J. Driebergen. Capillary Electrophoresis of Proteins; T.A.A.M. van de Goor. Applying Genetic Engineering to the Structural Analysis of Proteins; P.T. Hamilton. Index.



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