Practical Approaches To Biological Inorganic Chemistry 2e by Robert R. Crichton, Ricardo O. Louro
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Practical Approaches To Biological Inorganic Chemistry 2e by Robert R. Crichton, Ricardo O. Louro
Overview and Purpose
Published by Elsevier in September 2019, this 504-page paperback delivers a systematic exploration of how spectroscopic and analytical techniques elucidate the structure and function of metalloproteins and related biological systems. Each chapter is authored by renowned experts, providing in-depth theory, real-world implementation, and practical exercises, making the book both an analytical reference and a hands-on learning tool.
Key Features
「New Chapters on Cutting-Edge Techniques」
Introduction of 「Raman Spectroscopy」 and 「Molecular Magnetochemistry」, reflecting the latest advances in toolsets for metallobiology.
These additions fill a vital gap by integrating methods that probe vibrational and magnetic properties of metal centers in proteins and complexes.
「Comprehensive Methodological Coverage」
The volume encompasses eleven foundational and advanced experimental approaches:
Roles of metals in biology
Ligand field theory and computational chemistry
Molecular magnetochemistry
EPR spectroscopy
Biological NMR of metals
Mössbauer spectroscopy
X-ray absorption and emission (BioXAS)
Raman spectroscopy
Electrochemical methods
X-ray crystallography
Genetic and molecular biological approaches.
「Practical Structure」
Each chapter begins with foundational theory, followed by detailed descriptions of instrumentation, data interpretation, and illustrative case studies.
Color figures, worked examples, and exercises enrich comprehension, making this a valuable resource for self-study and classroom use.
「Authoritative Contributors」
Edited by 「Robert R. Crichton」, an Emeritus Professor at Université Catholique de Louvain, with a publication record exceeding 200 articles and extensive contributions to metal-in-biology courses.
「Ricardo O. Louro」, a specialist in biological NMR and metals from ITQB-UNL (Portugal), brings strong analytical proficiency.
Target Audience
「Graduate and postgraduate students」 in chemistry, biochemistry, bioinorganic chemistry, and related fields seeking a detailed, technique-driven education.
「Researchers and postdoctoral scholars」 in academia or industry employing spectroscopic and analytical tools to interrogate metalloproteins, model complexes, or metal-related mechanisms.
「Advanced undergraduates」 in laboratory courses or honors projects aiming to acquire a broad experimental skill set.
Detailed Chapter Breakdown
Here's an enriched overview of the chapters’ relevance and pedagogical value:
Chapter
Topic
Highlights
1
「Roles of Metals in Biological Systems」
Sets the stage with physiological functions of metal ions—electron transport, catalysis, storage, etc.
2
「Ligand-Field Theory & Computational Chemistry」
Bridges theory and method, including quantum calculations for metal–ligand systems.
3
「Molecular Magnetochemistry」
Examines spin states and magnetic coupling—new to this edition.
4
「EPR Spectroscopy」
Provides practical strategies using unpaired electron resonance to interrogate structure.
5
「Biological NMR and Metals」
Covers isotopic labeling, paramagnetic effects, and structural/dynamic insights.
6
「Mössbauer Spectroscopy」
Essential for studying iron-based biological centers with nuclear precision.
7
「X-ray Absorption/Emission (BioXAS)」
Enables electronic and geometric characterization of metal catalytic sites.
8
「Raman Spectroscopy」
Introduced in this edition, for vibrational probing of metalloproteins.
9
「Electrochemical Methods」
Addresses redox reactions crucial for biochemical electron transfer systems.
10
「X-ray Crystallography」
Discusses crystal growth, data analysis, and metal-center resolution.
11
「Genetic/Molecular Biological Approaches」
Ideal for combining mutagenesis, expression, and biophysical analyses.
Educational Value
「Hands-On Learning」: Exercises simulate real lab challenges—a powerful tool for reinforcing theory with application.
「Interdisciplinary Utility」: Ideal for collaborative use in joint courses or research across chemistry, biology, and physics.
「Up-to-Date Content」: Reflects current methodological advancements and emergent tools in metallobiology.
「Visual Aids」: Color graphics and spectra support concept retention and clarity in method interpretation.
Strengths & Benefits
「Balanced Theory & Application」: Each method is explained and immediately contextualized through its use in bioinorganic research.
「Expert Authorship」: Credible and practical insights drawn from researchers with proven track records.
「Flexible Format」: Use as a classroom textbook, reference volume, or personal resource.
「Rigorous Technical Depth」: Suitable for advanced academic use—especially by graduate students and professionals.
Ideal Use Cases
「Graduate Seminars」: Assign chapters before lab modules in spectroscopy or structural biology.
「Research Groups」: Source protocols for experiments involving EPR, XAS, NMR, crystallography, or electrochemistry.
「Directed Reading & Journal Clubs」: Use problems and examples to prompt discussion and exploration.
「Curriculum Development」: Framework for bioinorganic modules in interdisciplinary degree programs.
Editorial and Publication Details
「Publisher」: Elsevier
「Paperback ISBN」: 9780444642257
「eBook ISBN」: 9780444642264
「Publication Date」: 10–11 September 2019
「Length」: 504 pages
Conclusion
With its second edition, 「Practical Approaches to Biological Inorganic Chemistry」 stands as a thorough, up-to-date, and method-focused resource, perfect for graduate students, early-stage researchers, and academics. Its strength lies in blending rigorous theoretical treatment with real-world applications and data interpretation, supported by visual tools and exercises that drive comprehension. Whether you're characterizing metal-binding proteins, investigating redox centers, or exploring emerging protein–metal interactions, this volume serves as an essential guide—and a reliable companion for the curious scientist. ⚗️
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