
Biopharmaceutical Informatics
Beschreibung
This unique volume describes ways to invent and commercialize biomedicines more efficiently:
Calls for digital transformation of biopharmaceutical industry by appropriately collecting, curating, and making available discovery and pre-clinical development project data using FAIR principles
Describes applications of artificial intelligence and machine learning (AIML) in discovery of antibodies in silico (DAbI) starting with antigen design, constructing inherently developable antibody libraries, finding hits, identifying lead candidates, and optimizing them
Details applications of AIML, physics-based computational design methods, and other bioinformatics tools in fields such as developability assessments, formulation and excipient design, analytical and bioprocess development, and pharmacology
Presents pharmacokinetics/pharmacodynamics (PK/PD) and Quantitative Systems Pharmacology (QSP) models for biopharmaceuticals
Describes uses of AIML in bispecific and multi-specific formats
Dr Sandeep Kumar has also edited a collection of articles dedicated to this topic which can be found in the Taylor and Francis journal mAbs.
Weitere Details
Weitere Ausgaben
Personen
Dr. Andrew Nixon is currently Vice President, Biotherapeutics Molecule Discovery at Boehringer Ingelheim Pharmaceuticals, Inc., Ridgefield, CT, USA. Andy earned his Ph.D. in Physical Biochemistry from the University of London for studies completed at the MRC's National Institute for Medical Research. Andy has over 20 years of experience in biologic drug discovery and has contributed to over 100 antibody discovery programs resulting in numerous clinical candidates and approved biologics including TAKHZYRO, a fully human antibody inhibitor of plasma kallikrein.
Inhalt
Preface
About the editors
List of contributors
1. Biopharmaceutical Informatics: An Introduction
2. Digital transformation in the biopharmaceutical industry: rebuilding the way we discover complex therapeutics
3. Computational protein design strategies for optimization of antigen generation to drive antibody discovery
4. Bioinformatic Analyses of Antibody Repertoires and Their Roles in Modern Antibody Drug Discovery
5. Applications of Artificial Intelligence and Machine Learning Towards Antibody Discovery and Development
6. From Deep Generative Models to Structure-Based Simulations: Computational Approaches for Antibody Design
7. Computational biophysical analyses of antibody structure-function relationships with emphasis on therapeutic antibody-based biologics
8. Use of molecular simulations to understand structural dynamics of antibodies
9. Considerations of developability during the early stages of antibody drug discovery and design
10. In Silico Approaches to Deliver Better Antibodies by Design - The Past, the Present and the Future
11. Use of systems biology approaches towards target discovery, validation, and drug development
12. Recent advances in PK/PD and Quantitative Systems Pharmacology (QSP) models for biopharmaceuticals
13. The Artificial Intelligence Revolution: Transforming the Design and Optimization of Multispecific Antibodies
Index.
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