Biophysical Characterization of Proteins in Developing Biopharmaceuticals
Editat de Damian J. Houde, Steven A. Berkowitzen Limba Engleză Paperback – 18 noi 2019
In addition, best practices of applying statistical analysis to biophysical characterization data is included, along with practical issues associated with the concept of a biopharmaceutical’s developability and the technical decision-making process needed when dealing with biophysical characterization data.
- Presents basic protein characterization methods and tools applicable to (bio)pharmaceutical research and development
- Highlights the capabilities and limitations of each technique
- Discusses the underlining science of each tool
- Empowers industrial biophysical chemists by providing a roadmap for applying biophysical tools
- Outlines the needs for new characterization and analytical tools in the biopharmaceutical industry
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Specificații
ISBN-13: 9780444641731
ISBN-10: 0444641734
Pagini: 586
Dimensiuni: 191 x 235 x 31 mm
Greutate: 0.99 kg
Ediția:2
Editura: ELSEVIER SCIENCE
ISBN-10: 0444641734
Pagini: 586
Dimensiuni: 191 x 235 x 31 mm
Greutate: 0.99 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Public țintă
Researchers in academia and corporate laboratories who develop new instrumental methods for characterisation of proteins in general and biopharmaceutical proteins specifically; researchers in industry who develop these proteins and need characterisation methodsCuprins
I: Proteins and Biophysical Characterization in the Biopharmaceutical Industry
1. The Complexity of Protein Structure and the Challenges it Poses in Developing Biopharmaceuticals
2. Biophysical Characterization and Its Role in the Biopharmaceutical Industry
3. Biopharmaceutical Industry's Biophysical Toolbox
II: The Selected Biophysical Tools in the Biopharmaceutical Industry
4. An Introduction and Hierarchical Organization of the Biophysical Tool
5. The Value of UV, Fluorescence, and FTIR Spectroscopy in Biopharmaceutical Development
6. Circular Dichroism Spectroscopy for Protein Characterization: Biopharmaceutical Applications
7. Size-Exclusion Chromatograph (SEC) in Biopharmaceutical Process Development
8. Scattering Techniques for the Characterization of Biopharmaceuticals
9. Characterizing Biopharmaceuticals using Analytical Ultracentrifugation
10. Sub-visible and Visible Particle Analysis in Biopharmaceutical Research and Development
11. Differential Scanning Calorimetry in the Biopharmaceutical Sciences
12. Biophysical Mass Spectrometry for Biopharmaceutical Process Development: Focus on Hydrogen/Deuterium Exchange
13. One- and Two-Dimensional NMR Techniques for Biopharmaceuticals
14. Use of Chromatography and Electrophoresis for indirectly assessing Biophysical Characterization
III: Concluding Remarks on the Biophysical Characterization of Biopharmaceuticals
15. Biophysically Characterization of very large Biopharmaceuticals
16. Statistical Analysis of Biophysical Characterization Data
17. Biopharmaceutical Developability
18. Technical Decision-making dealing with Biophysical Characterization Data
19. Biophysical Characterization: An Integral Part of the "Totality of the Evidence" Concept
1. The Complexity of Protein Structure and the Challenges it Poses in Developing Biopharmaceuticals
2. Biophysical Characterization and Its Role in the Biopharmaceutical Industry
3. Biopharmaceutical Industry's Biophysical Toolbox
II: The Selected Biophysical Tools in the Biopharmaceutical Industry
4. An Introduction and Hierarchical Organization of the Biophysical Tool
5. The Value of UV, Fluorescence, and FTIR Spectroscopy in Biopharmaceutical Development
6. Circular Dichroism Spectroscopy for Protein Characterization: Biopharmaceutical Applications
7. Size-Exclusion Chromatograph (SEC) in Biopharmaceutical Process Development
8. Scattering Techniques for the Characterization of Biopharmaceuticals
9. Characterizing Biopharmaceuticals using Analytical Ultracentrifugation
10. Sub-visible and Visible Particle Analysis in Biopharmaceutical Research and Development
11. Differential Scanning Calorimetry in the Biopharmaceutical Sciences
12. Biophysical Mass Spectrometry for Biopharmaceutical Process Development: Focus on Hydrogen/Deuterium Exchange
13. One- and Two-Dimensional NMR Techniques for Biopharmaceuticals
14. Use of Chromatography and Electrophoresis for indirectly assessing Biophysical Characterization
III: Concluding Remarks on the Biophysical Characterization of Biopharmaceuticals
15. Biophysically Characterization of very large Biopharmaceuticals
16. Statistical Analysis of Biophysical Characterization Data
17. Biopharmaceutical Developability
18. Technical Decision-making dealing with Biophysical Characterization Data
19. Biophysical Characterization: An Integral Part of the "Totality of the Evidence" Concept