Water-Insoluble Drug Formulation

Cover of Water-Insoluble Drug Formulation by Ron Liu
Author: Ron Liu
Year: 2022
Language: en
Edition: 3
Pages: 756
ISBN-13: 9781032339214
Dimensions:
Height: 9.99998 Inches
Length: 7.00786 Inches
Weight: 0.99869404686 Pounds
Width: 1.71 Inches
Editorial overview Touché

Water-Insoluble Drug Formulation by Ron Liu, published by Taylor & Francis Group on July 12, 2022, is a comprehensive resource that addresses the challenges of water insolubility in drug development. This third edition spans 756 pages and presents a detailed examination of the scientific principles and practical applications related to solubility issues, which account for a significant percentage of failures in new drug development.

Readers will find a systematic exploration of solubility theories, prediction models, and preformulation aspects, alongside discussions on biopharmaceutics and pharmacokinetics. The book includes over 15 water-insoluble drug delivery systems, illustrated with case studies that cover both oral and parenteral applications. Designed as a reference for pharmaceutical scientists, this edition also serves as a valuable resource for undergraduate and graduate students in pharmacy and chemistry, enhancing their understanding of drug solubilization techniques and dissolution enhancement.


Official synopsis Publisher

Properties and Formulation: From Theory to Real-World Application

Scientists have attributed more than 40 percent of the failures in new drug development to poor biopharmaceutical properties, particularly water insolubility. Issues surrounding water insolubility can postpone or completely derail important new drug development. Even the much-needed reformulation of currently marketed products can be significantly affected by these challenges. More recently it was reported that the percentage increased to 90% for the candidates of new chemical entities in the discovery stage and 75% for compounds under development.

In the most comprehensive resource on the topic, this third edition of Water-Insoluble Drug Formulation brings together a distinguished team of experts to provide the scientific background and step-by-step guidance needed to deal with solubility issues in drug development. Twenty-three chapters systematically describe the detailed discussion on solubility theories, solubility prediction models, the aspects of preformulation, biopharmaceutics, pharmacokinetics, regulatory, and discovery support of water-insoluble drugs to various techniques used in developing delivery systems for water-insoluble drugs. This book includes more than 15 water-insoluble drug delivery systems or technologies, illustrated with case studies and featuring oral and parenteral applications. Highlighting the most current information and data available, this seminal volume reflects the significant progress that has been made in nearly all aspects of this field.

The aim of this book is to provide a handy reference for pharmaceutical scientists in the handling of formulation issues related to water-insoluble drugs. In addition, this book may be useful to pharmacy and chemistry undergraduate students and pharmaceutical and biopharmaceutical graduate students to enhance their knowledge in the techniques of drug solubilization and dissolution enhancement.

FAQ
What is “Water-Insoluble Drug Formulation” about?
This page includes the available description and bibliographic details for “Water-Insoluble Drug Formulation” by Ron Liu. Synopsis preview: Properties and Formulation: From Theory to Real-World Application Scientists have attributed more than 40 percent of the failures in new drug development to poor biopharmaceutical properties, particularly water insolubil…
Who is the author of “Water-Insoluble Drug Formulation”?
“Water-Insoluble Drug Formulation” is credited to Ron Liu.
When was “Water-Insoluble Drug Formulation” published?
Publisher: Taylor & Francis Group. Year: 2022.
What is the ISBN for “Water-Insoluble Drug Formulation”?
ISBN-13: 9781032339214.
What are the book details (language, pages, edition)?
Language: en. Pages: 756. Edition: 3.

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