Computational Pharmaceutical Solid State Chemistry

Computational Pharmaceutical Solid State Chemistry
Author: Yuriy A. Abramov
Publsiher: John Wiley & Sons
Total Pages: 450
Release: 2016-04-18
Genre: Science
ISBN: 9781118700747

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This book is the first to combine computational material science and modeling of molecular solid states for pharmaceutical industry applications. • Provides descriptive and applied state-of-the-art computational approaches and workflows to guide pharmaceutical solid state chemistry experiments and to support/troubleshoot API solid state selection • Includes real industrial case examples related to application of modeling methods in problem solving • Useful as a supplementary reference/text for undergraduate, graduate and postgraduate students in computational chemistry, pharmaceutical and biotech sciences, and materials science

Computational Pharmaceutical Solid State Chemistry

Computational Pharmaceutical Solid State Chemistry
Author: Yuriy A. Abramov
Publsiher: John Wiley & Sons
Total Pages: 468
Release: 2016-04-27
Genre: Science
ISBN: 9781119229179

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This book is the first to combine computational material science and modeling of molecular solid states for pharmaceutical industry applications. • Provides descriptive and applied state-of-the-art computational approaches and workflows to guide pharmaceutical solid state chemistry experiments and to support/troubleshoot API solid state selection • Includes real industrial case examples related to application of modeling methods in problem solving • Useful as a supplementary reference/text for undergraduate, graduate and postgraduate students in computational chemistry, pharmaceutical and biotech sciences, and materials science

Control and Prediction of Solid State of Pharmaceuticals

Control and Prediction of Solid State of Pharmaceuticals
Author: Rajni Miglani Bhardwaj
Publsiher: Springer
Total Pages: 238
Release: 2016-02-02
Genre: Science
ISBN: 9783319275550

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This thesis investigates a range of experimental and computational approaches for the discovery of solid forms. Furthermore, we gain, as readers, a better understanding of the key factors underpinning solid-structure and diversity. A major part of this thesis highlights experimental work carried out on two structurally very similar compounds. Another important section involves looking at the influence of small changes in structure and substituents on solid-structure and diversity using computational tools including crystal structure prediction, PIXEL calculations, Xpac, Mercury and statistical modeling tools. In addition, the author presents a fast validated method for solid-state form screening using Raman microscopy on multi-well plates to explore the experimental crystallization space. This thesis illustrates an inexpensive, practical and accurate way to predict the crystallizability of organic compounds based on molecular structure alone, and additionally highlights the molecular factors that inhibit or promote crystallization.

Solid state Chemistry of Drugs

Solid state Chemistry of Drugs
Author: Stephen R. Byrn
Publsiher: Ssci
Total Pages: 608
Release: 1999
Genre: Drugs
ISBN: UOM:39015050244899

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Theoretical and Computational Chemistry

Theoretical and Computational Chemistry
Author: Iwona Gulaczyk,Bartosz Tylkowski
Publsiher: Walter de Gruyter GmbH & Co KG
Total Pages: 270
Release: 2021-06-08
Genre: Technology & Engineering
ISBN: 9783110678215

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This book explores the applications of computational chemistry ranging from the pharmaceutical industry and molecular structure determination to spectroscopy and astrophysics. The authors detail how calculations can be used to solve a wide range of practical challenges encountered in research and industry.

Computational Medicinal Chemistry for Drug Discovery

Computational Medicinal Chemistry for Drug Discovery
Author: Patrick Bultinck,Hans De Winter,Wilfried Langenaeker,Jan P. Tollenare
Publsiher: CRC Press
Total Pages: 829
Release: 2003-12-17
Genre: Science
ISBN: 9780824758639

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Observing computational chemistry's proven value to the introduction of new medicines, this reference offers the techniques most frequently utilized by industry and academia for ligand design. Featuring contributions from more than fifty pre-eminent scientists, Computational Medicinal Chemistry for Drug Discovery surveys molecular structure computation, intermolecular behavior, ligand-receptor interaction, and modeling responding to market demands in its selection and authoritative treatment of topics. The book examines molecular mechanics, semi-empirical methods, wave function-based quantum chemistry, density functional theory, 3-D structure generation, and hybrid methods.

Frontiers in Computational Chemistry Volume 1

Frontiers in Computational Chemistry  Volume 1
Author: Zaheer Ul-Haq,Jeffry D. Madura
Publsiher: Elsevier
Total Pages: 362
Release: 2015-12-14
Genre: Science
ISBN: 9781608058648

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Frontiers in Computational Chemistry, originally published by Bentham and now distributed by Elsevier, presents the latest research findings and methods in the diverse field of computational chemistry, focusing on molecular modeling techniques used in drug discovery and the drug development process. This includes computer-aided molecular design, drug discovery and development, lead generation, lead optimization, database management, computer and molecular graphics, and the development of new computational methods or efficient algorithms for the simulation of chemical phenomena including analyses of biological activity. In Volume 1, the leading researchers in the field have collected eight different perspectives in the application of computational methods towards drug design to provide an up-to-date rendering of the current field. This volume covers a variety of topics from G protein-coupled receptors, to the use of cheminformatics and bioinformatics, computational tools such as Molecular Mechanics Poisson-Boltzmann Surface Area, protein-protein interactions, the use of computational methods on large biological data sets, various computational methods used to identify pharmaceutically relevant targets, and more. Brings together a wide range of research into a single collection to help researchers keep up with new methods Uniquely focuses on computational chemistry approaches that can accelerate drug design Makes a solid connection between experiment and computation and the novel application of computational methods in the fields of biology, chemistry, biochemistry, physics, and biophysics, with particular focus on the integration of computational methods with experimental data

Polymorphism in the Pharmaceutical Industry

Polymorphism in the Pharmaceutical Industry
Author: Rolf Hilfiker,Markus von Raumer
Publsiher: John Wiley & Sons
Total Pages: 512
Release: 2019-04-29
Genre: Science
ISBN: 9783527340408

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"Polymorphism in the Pharmaceutical Industry - Solid Form and Drug Development" highlights the relevance of polymorphism in modern pharmaceutical chemistry, with a focus on quality by design (QbD) concepts. It covers all important issues by way of case studies, ranging from properties and crystallization, via thermodynamics, analytics and theoretical modelling right up to patent issues. As such, the book underscores the importance of solid-state chemistry within chemical and pharmaceutical development. It emphasizes why solid-state issues are important, the approaches needed to avoid problems and the opportunities offered by solid-state properties. The authors include true polymorphs as well as solvates and hydrates, while providing information on physicochemical properties, crystallization thermodynamics, quantum-mechanical modelling, and up-scaling. Important analytical tools to characterize solid-state forms and to quantify mixtures are summarized, and case studies on solid-state development processes in industry are also provided. Written by acknowledged experts in the field, this is a high-quality reference for researchers, project managers and quality assurance managers in pharmaceutical, agrochemical and fine chemical companies as well as for academics and newcomers to organic solid-state chemistry.