Artificial Intelligence Platform for Molecular Targeted Therapy: A Translational Science Approach
This book focuses precisely on dynamic drug/target interfaces and argues that the true game change in pharmaceutical discovery will come as AI is enabled to solve core problems in molecular biophysics that are intimately related to rational drug design and drug discovery.
Here are a few examples to convey the flavor of our quest: How do we therapeutically impair a dysfunctional protein with unknown structure or regulation but known to be a culprit of disease? In regards to SARS-CoV-2, what is the structural impact of a dominant mutation?, how does the structure change translate into a fitness advantage?, what new therapeutic opportunity arises? How do we extend molecular dynamics simulations to realistic timescales, to capture the rare events associated with drug targeting in vivo? How do we control specificity in drug design to selectively remove side effects? This is the type of problems, directly related to the understanding of drug/target interfaces, that the book squarely addresses by leveraging a comprehensive AI-empowered approach.
Readership: Primary market: Graduate students in Biomedical Engineering, MD/PhD or Computer Science focusing on interdisciplinary translational research. Pharmaceutical researchers seeking in-depth understanding of the physical principles at work in rational drug design. Practitioners in molecular targeted medicine and biotechnology seeking to enlarge their technological base through incorporation of AI. Secondary market: Academic physical chemists, bioinformaticians and biophysicists interested in incorporating AI to their research toolbox.
Product Details
Product Details
- Publisher : World Scientific Publishing Company (April 8, 2021)
- Language : English
- Digital eBook : 468 pages