Physics at the Biomolecular Interface
eBook - PDF

Physics at the Biomolecular Interface

Fundamentals for Molecular Targeted Therapy

  1. 490 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Physics at the Biomolecular Interface

Fundamentals for Molecular Targeted Therapy

About this book

This book focuses primarily on the role of interfacial forces in understanding biological phenomena at the molecular scale. By providing a suitable statistical mechanical apparatus to handle the biomolecular interface, the book becomes uniquely positioned to address core problems in molecular biophysics. It highlights the importance of interfacial tension in delineating a solution to the protein folding problem, in unravelling the physico-chemical basis of enzyme catalysis and protein associations, and in rationally designing molecular targeted therapies. Thus grounded in fundamental science, the book develops a powerful technological platform for drug discovery, while it is set to inspire scientists at any level in their careers determined to address the major challenges in molecular biophysics.

The acknowledgment of how exquisitely the structure and dynamics of proteins and their aqueous environment are related attests to the overdue recognition that biomolecular phenomena cannot be effectively understood without dealing with interfacial behaviour. There is an urge to grasp how biologically relevant behaviour is shaped by the structuring of biomolecular interfaces and how interfacial tension affects the molecular events that take place in the cell. This book squarely addresses these needs from a physicist perspective.

The book may serve as a monograph for practitioners and, alternatively, as an advanced textbook. Fruitful reading requires a background in physical chemistry and some basics in biophysics. The selected problems at the end of the chapters and the progression in conceptual difficulty make it a suitable textbook for a graduate level course or an elective course for seniors majoring in chemistry, physics, biomedical engineering or related disciplines.

Information

Publisher
Springer
Year
2016
Print ISBN
9783319308517
eBook ISBN
9783319308524

Table of contents

  1. Preface
  2. Contents
  3. About the Author
  4. Chapter 1: Interfacial Physics for Water in Biology
  5. Chapter 2: Dielectric Structure of Aqueous Interfaces: From Classical Non-Debye Electrostatics to a Quantum Theory of Interfac...
  6. Chapter 3: Solution to the Protein Folding Problem
  7. Chapter 4: Epistructural Dynamics of Biological Water
  8. Chapter 5: Dehydron-Rich Proteins in the Order-Disorder Twilight Zone
  9. Chapter 6: Dehydron as a Marker for Molecular Evolution: Lessons for the Drug Designer
  10. Chapter 7: Catalytic Role of Dehydrons in Soluble Proteins: Biological Chemistry of Frustrated Interfacial Water
  11. Chapter 8: Epistructural Selectivity Filters for Molecular Targeted Therapy
  12. Chapter 9: Epistructural Re-engineering of Imatinib to Eliminate Adverse Side Effects
  13. Chapter 10: Epistructural Informatics for the Drug Designer
  14. Chapter 11: Drug-Target Associations Inducing Protein Folding
  15. Chapter 12: Drug Combinations to Enhance Therapeutic Efficacy and Edit Out Side Effects and Resistance to Inhibition of Drug R...
  16. Chapter 13: Epistructure-Based Design of Drugs with Controlled Promiscuity
  17. Chapter 14: Synergizing Engineered Immunotherapy with Molecularly Targeted Cancer Treatment
  18. Chapter 15: Quantum Mechanical Concepts for Epistructural Drug Design
  19. Chapter 16: Structure-Based Drug Discovery Without Structure: Working Around the Paradox to Disrupt Protein-Protein Associatio...
  20. Chapter 17: Epistructural Drug Design to Treat Cancer Metastasis and the Associated Drug Resistance
  21. ERRATUM TO
  22. Epilogue
  23. Appendix A
  24. Appendix B
  25. Index

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Yes, you can access Physics at the Biomolecular Interface by Ariel Fernández in PDF and/or ePUB format, as well as other popular books in Biological Sciences & Medical Theory, Practice & Reference. We have over 1.5 million books available in our catalogue for you to explore.