Computational Tools for Chemical Biology

Computational Tools for Chemical Biology
Title Computational Tools for Chemical Biology PDF eBook
Author Sonsoles Martín-Santamaría
Publisher Royal Society of Chemistry
Pages 392
Release 2017-10-25
Genre Science
ISBN 1788012569

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The rapid development of efficient computational tools has allowed researchers to tackle biological problems and to predict, analyse and monitor, at an atomic level, molecular recognition processes. This book offers a fresh perspective on how computational tools can aid the chemical biology research community and drive new research. Chapters from internationally renowned leaders in the field introduce concepts and discuss the impact of technological advances in computer hardware and software in explaining and predicting phenomena involving biomolecules, from small molecules to macromolecular systems. Important topics from the understanding of biomolecules to the modification of their functions are addressed, as well as examples of the application of tools in drug discovery, glycobiology, protein design and molecular recognition. Not only are the cutting-the-edge methods addressed, but also their limitations and possible future development. For anyone wishing to learn how computational chemistry and molecular modelling can provide information not easily accessible through other experimental methods, this book will be a valuable resource. It will be of interest to postgraduates and researchers in the biological and chemical sciences, medicinal and pharmaceutical chemistry, and theoretical chemistry.

Computational Tools for Chemical Biology

Computational Tools for Chemical Biology
Title Computational Tools for Chemical Biology PDF eBook
Author Sonsoles Martín-Santamaría
Publisher Royal Society of Chemistry
Pages 392
Release 2017-11-01
Genre Science
ISBN 1782627006

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This book offers a fresh perspective on how computational tools can aid the chemical biology research community and drive new research.

Biophysical and Computational Tools in Drug Discovery

Biophysical and Computational Tools in Drug Discovery
Title Biophysical and Computational Tools in Drug Discovery PDF eBook
Author Anil Kumar Saxena
Publisher Springer Nature
Pages 405
Release 2021-10-18
Genre Science
ISBN 3030852814

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This book reviews recent physicochemical and biophysical techniques applied in drug discovery research, and it outlines the latest advances in computational drug design. Divided into 10 chapters, the book discusses about the role of structural biology in drug discovery, and offers useful application cases of several biophysical and computational methods, including time-resolved fluorometry (TRF) with Förster resonance energy transfer (FRET), X-Ray crystallography, nuclear magnetic resonance spectroscopy, mass spectroscopy, generative machine learning for inverse molecular design, quantum mechanics/molecular mechanics (QM/MM,ONIOM) and quantum molecular dynamics (QMT) methods. Particular attention is given to computational search techniques applied to peptide vaccines using novel mathematical descriptors and structure and ligand-based virtual screening techniques in drug discovery research. Given its scope, the book is a valuable resource for students, researchers and professionals from pharmaceutical industry interested in drug design and discovery.

An Introduction to Computational Biochemistry

An Introduction to Computational Biochemistry
Title An Introduction to Computational Biochemistry PDF eBook
Author C. Stan Tsai
Publisher John Wiley & Sons
Pages 381
Release 2003-03-31
Genre Science
ISBN 0471461091

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This comprehensive text offers a solid introduction to the biochemical principles and skills required for any researcher applying computational tools to practical problems in biochemistry. Each chapter includes an introduction to the topic, a review of the biological concepts involved, a discussion of the programming and applications used, key references, and problem sets and answers. Providing detailed coverage of biochemical structures, enzyme reactions, metabolic simulation, genomic and proteomic analyses, and molecular modeling, this is the perfect resource for students and researchers in biochemistry, bioinformatics, bioengineering and computational science.

Computational Techniques for Analytical Chemistry and Bioanalysis

Computational Techniques for Analytical Chemistry and Bioanalysis
Title Computational Techniques for Analytical Chemistry and Bioanalysis PDF eBook
Author Philippe B. Wilson
Publisher Royal Society of Chemistry
Pages 383
Release 2020-12-10
Genre Science
ISBN 1788014618

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This work will serve as a definitive overview of the field of computational simulation as applied to analytical chemistry and biology, drawing on recent advances as well as describing essential, established theory for graduates and postgraduate researchers.

Computational Phytochemistry

Computational Phytochemistry
Title Computational Phytochemistry PDF eBook
Author Satyajit Dey Sarker
Publisher Elsevier
Pages 532
Release 2024-03-06
Genre Science
ISBN 0443161038

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Computational Phytochemistry, Second Edition, explores how recent advances in computational techniques and methods have been embraced by phytochemical researchers to enhance many of their operations, refocusing and expanding the possibilities of phytochemical studies. By applying computational aids and mathematical models to extraction, isolation, structure determination, and bioactivity testing, researchers can obtain highly detailed information about phytochemicals and optimize working approaches. This book aims to support and encourage researchers currently working with or looking to incorporate computational methods into their phytochemical work. Topics in this book include computational methods for predicting medicinal properties, optimizing extraction, isolating plant secondary metabolites, and building dereplicated phytochemical libraries. The roles of high-throughput screening, spectral data for structural prediction, plant metabolomics, and biosynthesis are all reviewed before the application of computational aids for assessing bioactivities and virtual screening is discussed. Illustrated with detailed figures and supported by practical examples, this book is an indispensable guide for all those involved with the identification, extraction, and application of active agents from natural products. This new edition captures remarkable advancements in mathematical modeling and computational methods that have been incorporated in phytochemical research, addressing, e.g., extraction, isolation, structure determination, and bioactivity testing of phytochemicals. - Includes step-by-step protocols for various computational and mathematical approaches applied to phytochemical research - Features clearly illustrated chapters contributed by highly reputable researchers - Covers all key areas in phytochemical research, including virtual screening and metabolomics

Catalyzing Inquiry at the Interface of Computing and Biology

Catalyzing Inquiry at the Interface of Computing and Biology
Title Catalyzing Inquiry at the Interface of Computing and Biology PDF eBook
Author National Research Council
Publisher National Academies Press
Pages 469
Release 2006-01-01
Genre Science
ISBN 030909612X

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Advances in computer science and technology and in biology over the last several years have opened up the possibility for computing to help answer fundamental questions in biology and for biology to help with new approaches to computing. Making the most of the research opportunities at the interface of computing and biology requires the active participation of people from both fields. While past attempts have been made in this direction, circumstances today appear to be much more favorable for progress. To help take advantage of these opportunities, this study was requested of the NRC by the National Science Foundation, the Department of Defense, the National Institutes of Health, and the Department of Energy. The report provides the basis for establishing cross-disciplinary collaboration between biology and computing including an analysis of potential impediments and strategies for overcoming them. The report also presents a wealth of examples that should encourage students in the biological sciences to look for ways to enable them to be more effective users of computing in their studies.