Drug Development Approaches for Poorly Soluble Compounds (Methods and Principles in Medicinal Chemistry) (1. Auflage)

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English

Product Description

Ten proven strategies to overcome solubility challenges in drug development
 
Poor water solubility prevents drug candidates from reaching their therapeutic targets, causing promising compounds to fail during development. Drug Development Approaches for Poorly Soluble Compounds presents ten distinct strategies for overcoming this challenge, from altering drug structure and creating prodrugs to formulation techniques using nanosuspensions, microemulsions, micelles, co-crystals, and co-solvents. Each approach includes case studies from current pharmaceutical industry projects.
 
This reference covers strategies applicable to virtually every drug type, regardless of molecular size or chemical composition. Beyond formulation science, the book addresses solubility-related commercial and regulatory considerations essential for bringing drugs to market. Special attention is given to animal study requirements for poorly soluble compounds. Each chapter demonstrates approaches through examples from recent pharmaceutical development projects across small and large companies.
 
Readers will also find:
 
*Detailed explanations of ten formulation strategies including nanosuspensions, microemulsions, micelles, co-crystals, and co-solvent approaches for enhancing drug solubility
*Practical case studies drawn from recent pharmaceutical industry drug development projects demonstrating real-world applications of each solubility enhancement strategy
*Guidance on regulatory considerations specific to poorly soluble compounds, helping developers navigate approval pathways more efficiently throughout the development process
*Coverage of special requirements for conducting animal studies with compounds that exhibit poor solubility in biological fluids
*Commercial considerations for solubility enhancement strategies that reduce required drug substance amounts, lowering costs and minimizing potential side effects
 
Designed for medicinal chemists, ph

Ten proven strategies to overcome solubility challenges in drug development Poor water solubility prevents drug candidates from reaching their therapeutic targets, causing promising compounds to fail during development. Drug Development Approaches for Poorly Soluble Compounds presents ten distinct strategies for overcoming this challenge, from altering drug structure and creating prodrugs to formulation techniques using nanosuspensions, microemulsions, micelles, co-crystals, and co-solvents. Each approach includes case studies from current pharmaceutical industry projects. This reference covers strategies applicable to virtually every drug type, regardless of molecular size or chemical composition. Beyond formulation science, the book addresses solubility-related commercial and regulatory considerations essential for bringing drugs to market. Special attention is given to animal study requirements for poorly soluble compounds. Each chapter demonstrates approaches through examples from recent pharmaceutical development projects across small and large companies. Readers will also find: Detailed explanations of ten formulation strategies including nanosuspensions, microemulsions, micelles, co-crystals, and co-solvent approaches for enhancing drug solubilityPractical case studies drawn from recent pharmaceutical industry drug development projects demonstrating real-world applications of each solubility enhancement strategyGuidance on regulatory considerations specific to poorly soluble compounds, helping developers navigate approval pathways more efficiently throughout the development processCoverage of special requirements for conducting animal studies with compounds that exhibit poor solubility in biological fluidsCommercial considerations for solubility enhancement strategies that reduce required drug substance amounts, lowering costs and minimizing potential side effects Designed for medicinal chemists, pharmaceutical chemists, pharmacologists, and pharmaceutical in

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