Pharmaceutical Organic Chemistry

Pharmaceutical Organic Chemistry

by Dennis Hodge

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ISBN 9781836597612
Publisher Marcel Dekker
Copyright year 2026
Price £177.00

About this book

This volume provides a comprehensive exploration of the fundamental principles and applications of organic chemistry within the pharmaceutical sciences. It begins with a detailed introduction to the subject, establishing the essential concepts that form the foundation for understanding the chemical basis of drug molecules. The discussion of structure and bonding in organic molecules highlights the ways in which atomic arrangements determine chemical behavior, reactivity, and stability, which are critical to the design and development of therapeutic agents. The text devotes particular attention to stereochemistry, emphasizing its pivotal role in pharmaceuticals, where the three-dimensional orientation of atoms can dictate the efficacy, potency, and safety of drugs. The treatment of functional groups and their properties provides a systematic approach to understanding how these reactive units influence chemical transformations, biological interactions, and drug action. A strong focus is also placed on reaction mechanisms in organic chemistry, enabling readers to appreciate the stepwise processes that govern molecular change and reactivity in pharmaceutical contexts. Further chapters delve into aromatic compounds and their reactions, offering insights into the unique stability and substitution patterns of benzene and its derivatives, which are central to many drug molecules. The exploration of natural products demonstrates their importance as a source of pharmacologically active substances, linking traditional knowledge with modern drug discovery. Collectively, the material balances theoretical knowledge with practical relevance, preparing students and professionals to apply organic chemistry concepts to pharmaceutical research and development. Through its systematic organization, clear explanations, and focus on applications, the text serves as a vital resource for gaining a deeper understanding of the molecular foundations of drug chemistry.