Hplc Method Development For Pharmaceuticals

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HPLC Method Development for Pharmaceuticals

HPLC Method Development for Pharmaceuticals
Author :
Publisher : Elsevier
Total Pages : 533
Release :
ISBN-10 : 9780080554198
ISBN-13 : 0080554199
Rating : 4/5 (199 Downloads)

Book Synopsis HPLC Method Development for Pharmaceuticals by : Satinder Ahuja

Download or read book HPLC Method Development for Pharmaceuticals written by Satinder Ahuja and published by Elsevier. This book was released on 2011-09-21 with total page 533 pages. Available in PDF, EPUB and Kindle. Book excerpt: High pressure, or high performance, liquid chromatography (HPLC) is the method of choice for checking purity of new drug candidates, monitoring changes during scale up or revision of synthetic procedures, evaluating new formulations, and running control/assurance of the final drug product. HPLC Method Development for Pharmaceuticals provides an extensive overview of modern HPLC method development that addresses these unique concerns. Includes a review and update of the current state of the art and science of HPLC, including theory, modes of HPLC, column chemistry, retention mechanisms, chiral separations, modern instrumentation (including ultrahigh-pressure systems), and sample preparation. Emphasis has been placed on implementation in a pharmaceutical setting and on providing a practical perspective. HPLC Method Development for Pharmaceuticals is intended to be particularly useful for both novice and experienced HPLC method development chemists in the pharmaceutical industry and for managers who are seeking to update their knowledge. - Covers the requirements for HPLC in a pharmaceutical setting including strategies for software and hardware validation to allow for use in a regulated laboratory - Provides an overview of the pharmaceutical development process (clinical phases, chemical and pharmaceutical development activities) - Discusses how HPLC is used in each phase of pharmaceutical development and how methods are developed to support activities in each phase


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