THE ROLE OF ASYMMETRIC SYNTHESIS IN DRUG DISCOVERY

Editors: Anjaneyulu Bendi, Neera Raghav

THE ROLE OF ASYMMETRIC SYNTHESIS IN DRUG DISCOVERY

ISBN: 979-8-89881-268-3
eISBN: 979-8-89881-267-6 (Online)

Introduction

The Role of Asymmetric Synthesis in Drug Discovery presents a comprehensive overview of how enantioselective synthesis drives the development of safer, more effective therapeutics. Because the 3D arrangement of atoms profoundly affects a drug’s activity, efficacy, and safety, asymmetric synthesis enables the precise production of single enantiomers—minimizing side effects and maximizing therapeutic performance. In the era of precision medicine, this selective control is indispensable for designing molecules that interact optimally with biological targets.

Spanning ten chapters, the book highlights cutting-edge experimental research on the asymmetric synthesis of diverse bioactive heterocycles. Topics include foundational principles of enantioselective synthesis, chiral heterocycles, alkaloids, terpenoids, spirooxindoles, dihydropyrimidinones, piperazine derivatives, and asymmetric oxazines. Additional chapters explore chiral triazoles, benzimidazoles, and broader classes of chiral pharmaceuticals synthesized through asymmetric strategies. Together, these chapters illustrate both the scientific depth and therapeutic potential of modern asymmetric methodologies.

The book serves as a forward-looking resource designed to inspire new research on chiral heterocycles and to support ongoing efforts in medicinal chemistry and drug design.

Key Features

  • - Explores core principles of enantioselective and asymmetric synthesis in drug discovery.
  • - Highlights synthetic strategies for diverse bioactive chiral heterocycles and natural products.
  • - Showcases experimental advancements in the synthesis of alkaloids, terpenoids, spirooxindoles, and more.
  • - Examines green, modern, and emerging approaches to asymmetric synthesis.
  • - Demonstrates therapeutic relevance through biological evaluations and pharmaceutical applications.
  • - Inspires future research on novel chiral scaffolds for drug development.

Target Readership:

Ideal for researchers, academicians, and industry professionals in medicinal chemistry and pharmaceutical sciences.

Foreword

It is my pleasure to write foreword for the book entitled The Role of Asymmetric Synthesis in Drug Discovery edited by Anjaneyulu Bendi, and Neera Raghav. The editors are esteemed researchers with a wealth of experience across various domains of organic and medicinal chemistry. Their collective expertise spans a wide range of research areas, earning them high regard within the academic community

The quest for novel therapeutic agents has been a central pursuit in medicinal chemistry. The importance of chirality in drugs is now universally recognized. The profound differences in the biological activity of enantiomers can determine the success or failure of a drug candidate. Asymmetric synthesis has become the linchpin in modern drug discovery, offering precision in creating structurally sound and biologically efficacious chemical compounds.

This book offers an in-depth exploration of the molecular advancements in applying asymmetric synthesis to drug discovery. Each chapter covers the transformative potential of asymmetric synthesis in crafting a variety of heterocycles as drug candidates. Asymmetric synthesis is increasingly pivotal in tailoring medications to specific biological targets in an era of rapidly advancing precision medicine. This book equips researchers, scientists, and students with the insights necessary to leverage stereochemistry effectively in the quest for safer, more effective, and superior therapeutics.

I am confident that the book The Role of Asymmetric Synthesis in Drug Discovery will be an invaluable resource for researchers, practitioners, and policymakers, fostering further exploration and contributing more to drug discovery and development through asymmetric synthesis.

I hope that the book will be well received by the scientific community.

M.P. Kaushik
Amity University, Gwalior, M.P
DRDO-DRDE, Gwalior, M.P &
New Delhi, India




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